Dr. Nadia Sraieb | Harmonic Analysis | Women Researcher Award

Dr. Nadia Sraieb | Harmonic Analysis | Women Researcher Award

Faculté des sciences de Gabès, at NATIONAL SCHOOL OF ENGENEER, Tunisia.

Nadia Sraieb is a dedicated mathematics educator and researcher with a strong background in harmonic analysis and its applications. Born on October 15, 1977, in Zarzis, Tunisia, she has made significant contributions to the field of mathematics, particularly in the area of uncertainty principles and localization operators.

Professional Profile

orcid

🎓 Education

– *Habilitation Universitaire*, University of Tunis El Manar (2025) 📚– *PhD in Mathematics*, University of Tunis El Manar (2011) 🔬– *Master’s Degree in Mathematics*, University of Tunis El Manar (2001) 🎓– *Certificat d’Aptitude au Professorat de l’Enseignement Secondaire*, CAPES in Mathematics (2002)

💼 Experience

– *Maître Assistant en Mathématiques*, National Engineering School of Gabes (2012-present) 👨‍🏫– *Assistant*, National Engineering School of Gabes (2008-2012) 👨‍🏫– *Assistant*, Faculty of Sciences of Gabes (2004-2008) 👨‍🏫– *Professor of Secondary Education*, Lycée Secondaire de Zarzis (2002-2004)

🔬 Research Interests

Nadia Sraieb’s research focuses on:- *Harmonic Analysis*: uncertainty principles and localization operators 🔬– *Mathematics Education*: innovative pedagogical methods and tools 📚

🏆 Awards

– *Habilitation Universitaire*, University of Tunis El Manar (2025) 🏆– *PhD Thesis*, University of Tunis El Manar (2011)

📚Top Noted  Publications

– Théorie de la mesure et integration 📚
– Mathématiques II pour l’ingénieur 📝
– Mathématiques III pour l’ingénieur 📝
– Mémoire pédagogique en mathématiques

Conclusion

 

Nadia Sraieb’s academic achievements, research experience, and teaching expertise make her a strong candidate for the Women Researcher Award. Her contributions to harmonic analysis and mathematics education are notable, and her leadership roles demonstrate her potential for continued excellence in research and academia. By emphasizing international collaboration, interdisciplinary research, and mentorship, Nadia Sraieb could further strengthen her application and demonstrate her commitment to advancing research and education.

Dr. Vijayata Singh | Genetics and Plant Breeding | Excellence in Research

Dr. Vijayata Singh | Genetics and Plant Breeding | Excellence in Research

Senior Scientist, ICAR – Central Soil Salinity Research Institute, India

Dr. Vijayata Singh is a dedicated researcher in the field of genetics and plant breeding, with a strong focus on improving crop resilience to salt-affected areas. With a robust academic background and extensive research experience, Dr. Singh has made significant contributions to the development of salt-tolerant varieties of lentil, soybean, and mustard. His work has led to the release of two lentil varieties, PDL-1 and PSL-9, suitable for cultivation in moderate salinity-affected soils. Dr. Singh’s research aims to enhance crop productivity and food security in salt-affected regions.

Professional Profile

Orcid

🎓Education

Dr. Vijayata Singh’s educational background includes:
– (link unavailable) in Applied Biotechnology from Sikkim Manipal University of Health, Medical and Technological Sciences, Gangtok (2007)
– (link unavailable) (Ag.) in Genetics and Plant Breeding from Bundelkhand University, Jhansi (2009)
– Ph.D. in Genetics and Plant Breeding from CCS Haryana Agriculture University, Hisar (2014)

💼Experience 

– Scientist at ICAR-Central Soil Salinity Research Institute, Karnal (April 2016 – present)- Scientist at ICAR-National Academy of Agricultural Research Management, Hyderabad (January 2016 – March 2016)His research experience spans various projects focused on genetic improvement of pulse crops for salt tolerance using conventional and molecular breeding approaches.

🔍Research Focus 

Dr. Singh’s research focuses on the genetic improvement of pulses and oilseed crops for salt tolerance. His projects include:- Genetic improvement of lentil for salt tolerance- Development of salt-tolerant soybean genotypes- QTL mapping and marker identification for salinity tolerance in chickpea and lentil

🏅Awards and Honors 

– Recipient of the Best Young Scientist Award-2020- Best Poster Award in DAE-BRNS Life Sciences Symposium- Developed and released two lentil varieties (PDL-1 and PSL-9) for salt-affected areas

 Publications 📚

1. Genetic improvement of Lentil (Lens culinaris Medikus) for salt tolerance using conventional and molecular breeding approaches 📝
2. Development of high-density linkage map and tagging salinity tolerance in lentil using genotyping-by-sequencing approach 🔬
3. Molecular genetic analysis of resistance/tolerance in rice, wheat, chickpea, and mustard including sheath blight complex genomics 🌟
4. QTL mapping and identification of markers linked to salinity tolerance in chickpea (Cicer arietinum L.) 🌿
5. Development of Soybean [Glycine max (L.) Merrill] genotypes for higher yield under Salt Stress 💪
6. Development of Salt Tolerant and High Yielding Indian Mustard (Brassica juncea L. Czern & Coss) Genotypes Using Classical and Modern Breeding Approaches 🌼
7. Genetic improvement of chickpea for salt tolerance through conventional and molecular breeding approaches 🔝
8. Enhancement of genetic potential of Moongbean and Lentil in multi-season and different cropping system adaptation 🌱
9. Development and validation of Multi-trait allele specific SNP panel for high throughput genotyping of breeding populations in Soybean 💻

Conclusion

Dr. Vijayata Singh’s impressive academic background, prolific research output, and significant contributions to crop improvement for salt tolerance make him a strong and suitable candidate for the Young Researcher Award. His ability to tackle complex problems in crop genetics and breeding, coupled with his passion for research, positions him well for future contributions in agricultural science.

Dandan Cui | 2D materails | Best Researcher Award

Ms.Dandan Cui | 2D materails | Best Researcher Award

Assistant research fellow at  Beihang University, China

🌟 Name: Dr. Dandan Cui 🎓 Title: Ph.D. in Physics 🏫 Current Position: Assistant Professor, Beihang University (2020–Present) 📚 Expertise: Two-dimensional materials, surface physicochemistry, and photocatalytic materials. 📖 Publications: Author of highly cited works in journals such as Journal of Materials Chemistry A and ACS Sustainable Chemistry & Engineering. 💡 Contribution: Pioneered advancements in photocatalytic materials, vacancy engineering, and photoelectrocatalysis.

Professional Profiles:

Education🎓

Ph.D. in Physics: Focused on surface physicochemistry and advanced materials research. 📖 Master’s Degree: Specialization in material engineering with research on photocatalysts. 🏫 Undergraduate Degree: Studied Physics with high distinction, fostering a strong foundation in theoretical and experimental science. 📘 Achievements: Graduated with honors and consistently recognized for academic excellence throughout studies.

Experience 🏫

2020–Present: Assistant Professor at Beihang University, advancing research in photocatalytic materials. 🔬 Collaborative Research: Published groundbreaking studies on BiOCl and BiVO4, influencing the field of material science. 📘 Leadership Roles: Mentored graduate students and coordinated multi-disciplinary research projects. 🌐 Outreach: Active participation in international conferences and workshops on advanced materials.

Awards and Honors 🏅

Highly Cited Paper Award: For influential research in Journal of Materials Chemistry A. 🎖️ Young Researcher Award: Recognized for contributions to photocatalysis and material design. 🏆 Research Excellence Award: Honored by Beihang University for innovative achievements. 📜 Invited Reviewer: Prestigious journals in materials science and chemistry.

Research Focus 🧪

Photocatalytic Materials: Design and development of novel semiconductors for energy applications. 🌀 Two-Dimensional Materials: Exploration of physicochemical properties for enhanced functionality. 💡 Vacancy Engineering: Leveraging defects for improved photocatalytic and photoelectrochemical properties. 🔬 Surface Wettability: Investigating its role in photoelectrocatalytic oxygen evolution. 🌍 Sustainability: Advancing green energy technologies through material innovation.

✍️Publications Top Note :

Combination of nanoparticles with single-metal sites synergistically boosts co-catalyzed formic acid dehydrogenation
📝 Authors: Shi, Y.; Luo, B.; Sang, R.; Beller, M.; Li, X.
📚 Journal: Nature Communications, 2024, 15(1), 8189.
Focus: Combines nanoparticles with single-metal sites for formic acid dehydrogenation, enhancing catalytic performance.

Emerging Amorphized Metastable Structures to Break Limitations of 2D Materials for More Promising Electrocatalysis
📝 Authors: Gao, Y.; Liang, H.; Xu, H.; Huang, W.; Lin, L.
📚 Journal: ACS Energy Letters, 2024, 9(8), 3982–4002.
Focus: Reviews metastable 2D materials for improved electrocatalysis.

Emerging Advances of Liquid Metal toward Flexible Sensors
📝 Authors: Qin, J.; Cui, D.; Ren, L.; Shi, Y.; Du, Y.
📚 Journal: Advanced Materials Technologies, 2024, 9(14), 2300431.
Focus: Discusses liquid metal applications in flexible sensors.

Cobalt-Doped Aluminum Aerogels as Photocatalyst Fabricated by a Liquid Metal Reaction Method
📝 Authors: Xu, Q.; Lv, Z.; Zhu, Y.; Hao, W.; Du, Y.
📚 Journal: Journal of Chemical Education, 2024, 101(7), 2850–2856.
Focus: Explores cobalt-doped aerogels for photocatalysis.

Synchronous Pressure-Induced Enhancement in the Photoresponsivity and Response Speed of BiOBr
📝 Authors: Yue, L.; Cui, D.; Tian, F.; Du, Y.; Liu, B.
📚 Journal: Acta Materialia, 2024, 263, 119529.
Focus: Demonstrates enhanced photocatalytic properties of BiOBr under pressure.

Synergistic Surface Engineering of BiVO4 Photoanodes for Improved Photoelectrochemical Water Oxidation
📝 Authors: Wang, S.; Shi, Z.; Du, K.; Du, Y.; Hao, W.
📚 Journal: Small Methods, 2024.
Focus: Investigates BiVO4 photoanodes for water oxidation.

Constructing 2D Bismuth-Based Heterostructure for Highly Efficient Photocatalytic CO2 Reduction
📝 Authors: Xu, R.-H.; Jiang, H.-Y.; Cui, D.-D.; Hao, W.-C.; Du, Y.
📚 Journal: Tungsten, 2024.
Focus: Designs bismuth-based heterostructures for CO2 reduction.

Atomically Dispersed Cobalt/Copper Dual-Metal Catalysts for Synergistically Boosting Hydrogen Generation from Formic Acid
📝 Authors: Shi, Y.; Luo, B.; Liu, R.; Beller, M.; Li, X.
📚 Journal: Angewandte Chemie – International Edition, 2023, 62(43), e202313099.
Focus: Enhances hydrogen generation using dual-metal catalysts.

Bismuth-Based Semiconductor Heterostructures for Photocatalytic Pollution Gases Removal
📝 Authors: Wang, Y.; Du, K.; Xu, R.; Hao, W.; Du, Y.
📚 Journal: Current Opinion in Green and Sustainable Chemistry, 2023, 41, 100824.
Focus: Reviews bismuth-based materials for gas pollution removal.

Operando Reconstruction-Induced CO2 Reduction Activity and Selectivity for Cobalt-Based Photocatalysis
📝 Authors: Zhao, K.; Pang, W.; Jiang, S.; Fu, D.; Zhao, H.
📚 Journal: Nano Research, 2023, 16(4), 4812–4820.
Focus: Studies cobalt-based photocatalysis for CO2 reduction.

Conclusion

Dr. Dandan Cui is a highly suitable candidate for the Best Researcher Award, given her outstanding contributions to two-dimensional materials and photocatalytic material science. Her impactful publications, innovative research, and leadership in collaborative projects make her a strong contender. To further enhance her candidacy, she could expand her recognition, secure research funding, and increase her interdisciplinary and societal contributions. With her trajectory, she is poised to make even more significant advances in her field and inspire future researchers.

ROHINI SURADKAR | Computational Chemistry | Best Researcher Award

Ms. ROHINI SURADKAR | Computational Chemistry | Best Researcher Award

STUDENT at Dr. Babasaheb Ambedkar Marathwada University, Aurangabad, India

Ms. Rohini R. Suradkar is a passionate Chemistry professional with over 2.5 years of research experience in inorganic and computational chemistry. Currently a Ph.D. scholar at Dr. Babasaheb Ambedkar Marathwada University, she specializes in the synthesis and computational study of imidazole derivatives, with a strong focus on greener organic synthesis and metal-organic frameworks. Known for her strong interpersonal and communication skills, Ms. Suradkar is adept at working independently to achieve key research goals. Her dedication to academic excellence is evident through her publications, presentations, and continuous pursuit of knowledge in the chemistry field.

Publication Profile

scholar

Education🎓

Ph.D. (Chemistry) (2021-Present): Dr. Babasaheb Ambedkar Marathwada University, focusing on “Synthesis, Characterization, and Density Functional Theoretical Study of Imidazole Derivatives.” M.Sc. (Chemistry) (2015-2017): Dr. Babasaheb Ambedkar Marathwada University; scored 64.50%. B.Sc. (Chemistry) (2012-2015): Lal Bahadur Shastri College, Jalna, with 81.08%.Higher Secondary Certificate (HSC): Jawahar Navodaya Vidyalaya, Partur, scored 69.64%. Secondary School Certificate (SSC): Jawahar Navodaya Vidyalaya, Partur, scored 76.08%. Ms. Suradkar has also obtained notable certifications in computational and industrial chemistry, enriching her theoretical and practical knowledge base.

Experience🔬 

Predoctoral Research: Ms. Suradkar completed a significant project on “p-TSA catalyzed one-pot synthesis of 1,3,5-trisubstituted pyrazole” as part of her M.Sc. degree. Research Scholar: Actively involved in advanced studies and hands-on lab work at Dr. Babasaheb Ambedkar Marathwada University. Presentations & Conferences: Ms. Suradkar has presented posters at prominent conferences like I-MAT 2024 at IIT Roorkee and the GOLD-CT-2024 conference at Kavayitri Bahinabai Chaudhari North Maharashtra University, showcasing her findings and expanding her academic network.

Awards and Honors🏆

Dr. Babasaheb Ambedkar National Research Fellowship (BANRF)-2021 Certificates: Green Olympiad 2009, Intel Learn Program, and NTSE (MH rank 96). Workshops & Conferences: Attended workshops on computational chemistry and material science at renowned institutes such as ICT Mumbai, C-DAC Pune, and IIT Roorkee. Notable Achievements: Ms. Suradkar’s research presentations and poster sessions have gained attention in the field, underscoring her commitment to sustainable chemical sciences and green synthesis practices.

Research Focus🔍 

Imidazole Derivatives: Synthesizing and characterizing imidazole molecules with advanced density functional theory (DFT) studies. Green Chemistry: Research on eco-friendly synthesis methods, focusing on metal-organic frameworks and fluorescence analysis.  Computational Chemistry: Utilizes Gaussian 09 software for complex molecular modeling and computational analysis. Greener Synthesis: Committed to developing sustainable methods for chemical synthesis, especially using Lewis acid catalysis and solvent-free approaches.  Publications: Published impactful papers on novel imidazole-based derivatives and eco-friendly pyrazolopyrano pyrimidine synthesis, reflecting her dedication to innovative, sustainable chemistry.

Publication  Top Notes

Synthesis, Characterization, and Computational Analysis of Novel Imidazole-Based Derivative with Tailored Electronic Properties
Authors: R.R. Suradkar, D.P. Gholap, A.V. Belambe, M.K. Lande
Journal: Journal of Photochemistry and Photobiology A: Chemistry, Volume 458, Article 115987
Year: 2025

Synthesis of Pyrazolopyrano Pyrimidines via One-Pot Solvent-Free Greener Approach Utilizing Lanthanum Trifluoroacetate and Trichloroacetate Lewis Acids Supported on Mesoporous Silica
Authors: D.P. Gholap, R. Suradkar, R. Huse, M.K. Lande
Journal: Polyhedron, Article 117273
Year: 2025

Conclusion

Ms. Rohini Ramesh Suradkar is a highly suitable candidate for the Best Researcher Award. Her solid academic foundation, focus on sustainable and computational chemistry, and proven publication record establish her as a promising scientist with a commitment to advancing knowledge in inorganic chemistry. She has demonstrated a strong grasp of modern chemical synthesis and theoretical studies, which, combined with her technical skills and continuous professional development, mark her as an outstanding researcher with considerable potential for further accomplishments in her field.

Hasi Rani Barai | Nanocomposite materials | Best Researcher Award

Assist Prof Dr. Hasi Rani Barai | Nanocomposite materials | Best Researcher Award

Assistant Professor at Yeungnam University, South Korea

Dr. Hasi Rani Barai is an accomplished Assistant Professor at Yeungnam University, Republic of Korea, specializing in materials science and nanotechnology. She completed her postdoctoral research in artificial photosynthesis at Sogang University and nanomaterials at Ewha Womans University. Dr. Barai has earned global recognition for her innovative work in energy storage devices and nanocomposite materials. She holds a Ph.D. from Inha University and has published extensively in high-impact journals. Her career is marked by a deep commitment to advancing materials engineering and green energy solutions.

Publication Profile

Education 🎓

Ph.D. (2010–2013): Inha University, South Korea, under Prof. H.W. Lee – Research in physical organic mechanisms, nanomaterials, and high-energy materials. M.S. (2006–2008): University of Dhaka, Bangladesh, under Prof. M. Muhibur Rahman – Specialized in laser spectroscopy and physical chemistry. B.Sc. (2000–2006): University of Dhaka, Bangladesh, under Prof. M. Muhibur Rahman – Studied chemistry with a focus on nanomaterials and spectroscopy.

Experience 🔬 

Assistant Professor (2015–present): Yeungnam University, South Korea – Leading research in nanocomposites, energy storage, and biosensors Postdoctoral Fellow (2013–2015): Sogang University, South Korea – Focused on artificial photosynthesis and nanocatalysts for CO2 reduction. Postdoctoral Fellow (2013): Ewha Womans University, South Korea – Researched nanoparticles for energy storage. Research Fellow: Expert in supercapacitors, electrochemistry, and MOFs.

Awards and Honors 🏅

KCAP Fellowship: Awarded for outstanding research in artificial photosynthesis and nanomaterials at Sogang University. Best Paper Award: Recognition for top-tier research publications in energy storage systems. International Research Grants: Secured multiple research grants to advance the field of nanotechnology and green energy. Young Scientist Award: Honored for innovative contributions in the field of materials science and energy devices.

Research Focus 🔍 

Materials Science & Engineering: Specializes in nanocomposites, supercapacitors, and biosensors. Electrochemistry & Energy Storage: Focus on supercapacitors, nanoparticles, and energy storage devices for sustainable technologies. Nanotechnology & Catalysis: Research in nanocatalysts, MOFs, and CO2 reduction for artificial photosynthesis. Green Energy: Leading innovations in renewable energy solutions using nanomaterials and advanced electrochemistry.

Publication  Top Notes

High-Performance Battery-Type Supercapacitors: Investigated the growth of nanorods/nanospheres on conductive frameworks for energy storage. ACS Applied Materials & Interfaces, July 2024. DOI: 10.1021/acsami.4c03109

Detection of Polymorphisms in FASN, DGAT1, and PPARGC1A Genes: Analyzed gene associations with milk yield and composition traits in river buffalo. Animals, June 2024. DOI: 10.3390/ani14131945

Conductive Gels for Energy Storage and Conversion: Studied design strategies for materials used in energy applications. Materials, May 2024. DOI: 10.3390/ma17102268

Antibiotic Resistance in Plant Pathogenic Bacteria: Discussed environmental impacts and biocontrol agents. Plants, April 2024. DOI: 10.3390/plants13081135

pH-Sensitive Hydrogel Membrane for Dye Water Purification: Developed sodium alginate/poly(vinyl alcohol) hydrogel for environmental applications. ACS ES&T Water, February 2024. DOI: 10.1021/acsestwater.3c00567

 

Conclusion

Dr. Hasi Rani Barai is highly suitable for the Best Researcher Award due to her remarkable achievements in the fields of nanocomposite materials, energy storage, and artificial photosynthesis. Her extensive academic and research career reflects excellence in innovative materials science, positioning her as a leading researcher in cutting-edge technologies that address global challenges. By fostering international collaborations and emphasizing applied research, Dr. Barai’s already stellar portfolio could reach even greater heights, making her a deserving candidate for this award.

Di Lan | Microwave absorption | Best Researcher Award

Dr. Di Lan | Microwave absorption | Best Researcher Award

Associate professor at Hubei University of Automotive Technology,  china

Lan Di, born in Shiyan, Hubei on November 4, 1994, is a lecturer at the Hubei University of Automotive Technology. He holds a PhD in Materials Science from Northwestern Polytechnical University. His research revolves around specialty engineering plastics, polyimide adhesives, and wave-absorbing materials, with notable applications in the military sector. With over 48 SCI papers published, Lan Di has established himself as a prominent figure in his field, earning recognition in Stanford University’s Top 2% Global Scientists list in 2022 and 2023.

Publication Profile

Scholar

Education🎓

Bachelor’s Degree (2012-2016) in Polymer Science and Engineering from Hubei University Master’s Student (2016-2019) in Materials Science at Northwestern Polytechnical University. Doctoral Candidate (2019-2022) in Materials Science at Northwestern Polytechnical University. Throughout his academic career, Lan focused on high-temperature adhesives and wave-absorbing materials, publishing extensively in renowned scientific journals and earning over 2,200 citations on Google Scholar.

Experience🧑‍🏫 

Lecturer (2023-present) at the Polymer Department, Hubei University of Automotive Technology, where Lan teaches and continues his cutting-edge research in polymer materials and high-temperature adhesives. Doctoral Candidate (2019-2022) at Northwestern Polytechnical University, where he published 48 SCI papers and worked on groundbreaking research in wave-absorbing materials and high-entropy alloys aster’s Student (2016-2019) focused on the study of engineering plastics and modified PTFE gaskets for military applications.

Awards and Honors🔬 

Global Top 2% Scientist (2022, 2023) by Stanford University for outstanding contributions in polymer materials research. First Prize for the Most Influential Paper Award from the Chinese Physical Society in 2021. Highly cited researcher with 4 ESI Hot Papers and 8 highly cited ESI papers. Filed three patent applications in the field of polyimide adhesives and wave-absorbing materials.

Research Focus🔬 

Specialty Engineering Plastics: Focus on polyimide high-temperature adhesives and modified PTFE gaskets used in military engines and motor seals. High-Temperature Adhesives: Developing polyimide adhesives for high-energy motor rotors. Wave-Absorbing Materials: Expertise in high-entropy alloys and ceramics, leading projects on polymer-based wave-absorbing materials. Published extensively in SCI journals, contributing to innovations in military and industrial applications of polymers.

Publication  Top Notes

Facile synthesis of hierarchical chrysanthemum-like copper cobaltate-copper oxide composites for enhanced microwave absorption performance
📖 Journal of Colloid and Interface Science, 533, 481-491 (2019), 211 citations
Co-authors: M Qin, R Yang, S Chen, H Wu, Y Fan, Q Fu, F Zhang.

Novel binary cobalt nickel oxide hollowed-out spheres for electromagnetic absorption applications
📖 Chemical Engineering Journal, 382, 122797 (2020), 205 citations
Co-authors: M Qin, J Liu, G Wu, Y Zhang, H Wu.

Progress in low-frequency microwave absorbing materials
📖 Journal of Materials Science: Materials in Electronics, 29, 17122-17136 (2018), 201 citations
Co-authors: Z Jia, K Lin, M Qin, K Kou, G Wu, H Wu.

Simultaneous manipulation of interfacial and defects polarization toward Zn/Co phase and ion hybrids for electromagnetic wave absorption
📖 Advanced Functional Materials, 31(50), 2106677 (2021), 194 citations
Co-authors: Z Gao, L Zhang, H Wu.

Synergistic Polarization Loss of MoS2-Based Multiphase Solid Solution for Electromagnetic Wave Absorption
📖 Advanced Functional Materials, 32(18), 2112294 (2022), 167 citations
Co-authors: Z Gao, Z Ma, Z Zhao, L Zhang, H Wu, Y Hou.

Conclusion

Lan Di is an exceptionally qualified candidate for the Best Researcher Award, with a strong track record in high-impact publications, patent filings, and leadership roles within the scientific community. His specialized focus on high-entropy alloys, specialty engineering plastics, and wave-absorbing materials places him at the forefront of critical fields in materials science. While there are opportunities to broaden his impact through further industry collaborations and interdisciplinary research, his current accomplishments make him highly deserving of this award.

Md Mahfuzur Rahman | Cellulose | Best Researcher Award

Dr.  Bangladesh University of Textiles, Bangladesh

I am currently pursuing a B.Sc. degree in Textile Engineering with a specialization in Industrial and Production Engineering at the Bangladesh University of Textiles (BUTEX) in Bangladesh. Since 2018, I have been working as a research assistant at both BUTEX and North South University (NSU). My research interests include Nanomaterials & Nanomechanics, Semiconductor Electrophysics, Magnetic Materials, Wearable Smart Textiles, Biomedical applications, Thin Film Magnetism, First-principle DFT studies, and Engineered 2D Quantum Materials. I have previously conducted research on ferrite nanomaterials, synthesizing and characterizing their properties, as well as sustainable textiles. I have recently been working on smart textiles and experimental and DFT analysis of perovskite materials. Moreover, I actively participated in various clubs, including BUTEX Sports Club and BUTEX Youth Development Club, which honed my leadership and event management skills. From an early age, mathematics has been my favorite subject, and I have actively participated in the Bangladesh Mathematical Olympiad, achieving two awards. Additionally, in 2016, I secured the 12th position in the Bangladesh Physics Olympiad. I also participated at Asian Pacific Mathematical Olympiad. My penchant for creative endeavors inspired my research journey, which began in my first year of undergraduate studies.

Professional Profiles:

🎯 Career Objective

I aim to be a valuable professional contributing to institutions and society through creative and impactful research. Seeking a research-oriented position to leverage my knowledge and skills, I thrive in challenging environments that foster continuous learning. My passion lies in Material Science related research.

🎓 Education

Bangladesh University of Textiles, Dhaka, BangladeshB.Sc. in Textile Engineering (Specialization in Industrial & Production Engineering) (2018-2023)CGPA: 3.16/4Rajshahi Govt. City College, Rajshahi, BangladeshHigher Secondary Certificate (2017)GPA: 5/5Agrani School and College, Rajshahi, BangladeshSecondary School Certificate (2015)GPA: 5/5

💻 Technical Qualifications

Computer Skills

C, Python, MS Office, OriginLab Software, FullProf Software, Imagej, CAD, CATIA, CASTEP, SolidWorks

Experimental Techniques

X-ray Diffraction (XRD), FTIR, FESEM, Transmission Electron Microscopy, UV-Visible Spectroscopy, Vibrating Sample Magnetometer, Universal Testing Machine, TGA, DTA

Theoretical Techniques

Rietveld Analysis, DFT Investigation, Stress and Displacement Analysis

🔬 Research Interests

Wearable Smart TextilesBiomedicalNanomaterials & NanomechanicsSemiconductor Electro-physicsAdditive ManufacturingThin Film MagnetismFirst-Principle DFT StudyPhotovoltaics

Strengths for the Award:

  • Research Contributions: The researcher should have a strong portfolio of impactful publications, such as high-quality journal articles, conference papers, or patents, that have significantly contributed to their field.
  • Innovation: The researcher’s work should demonstrate a high level of innovation, leading to new discoveries or advancements in technology, methodology, or understanding in their area of expertise.
  • Collaboration and Leadership: The researcher should have a track record of leading or collaborating on interdisciplinary projects, demonstrating their ability to work with a diverse range of experts.
  • Recognition and Awards: Previous recognition through awards, grants, or invitations to speak at conferences can highlight the researcher’s influence and reputation in their field.
  • Impact on Society: The research should have a tangible impact on society, such as applications in industry, policy changes, or contributions to solving real-world problems.

Areas for Improvement:

  • Broader Impact: While the researcher may have made significant contributions to a specific field, they may need to expand the reach of their work to have a broader impact across multiple disciplines.
  • Communication and Outreach: The ability to communicate research findings to a non-specialist audience, including the general public, policymakers, or industry stakeholders, is increasingly important. Improvement in this area could enhance the visibility and impact of their work.
  • Diversity and Inclusion: The researcher could focus more on mentoring underrepresented groups in their field or engaging in initiatives that promote diversity and inclusion in science and research.
  • Sustainability and Ethics: Depending on the research field, the researcher may need to incorporate more sustainable practices or address ethical considerations in their work.

✍️Publications Top Note :

Cellulose Fiber from Jute and Banana Fiber:

Publication: “Physical properties of isolated cellulose fiber from jute and banana fiber through kraft pulping: Potential applications in packaging and regenerated fibers.”

Journal: SPE Polymers (2024).

Focus: Investigation of the physical properties of cellulose fibers derived from jute and banana through kraft pulping. The study explores potential applications in packaging and the development of regenerated fibers.

Electromagnetic Properties of Al3+ Substituted Ni–Co Ferrites:

Publication: “Rietveld refined structural and sintering temperature dependent electromagnetic properties of Al3+ substituted Ni–Co ferrites prepared through sol–gel auto combustion method for high-frequency and microwave devices.”

Journal: Journal of Materials Science: Materials in Electronics (2024).

Focus: This research delves into the electromagnetic properties of Al3+ substituted Ni-Co ferrites, emphasizing their application in high-frequency and microwave devices.

Triboelectric Nanogenerators:

Publication: “Carbon-based Textile structured Triboelectric Nanogenerators for Smart Wearables.”

Status: Preprint (2024).

Focus: Development of carbon-based textile triboelectric nanogenerators aimed at powering smart wearable devices.

Magnetic and Optoelectronic Properties of Ni-Cu Spinel Ferrites:

Publication: “Magnetic, optoelectronic, and rietveld refined structural properties of Al3+ substituted nanocrystalline Ni-Cu spinel ferrites: An experimental and DFT based study.”

Journal: Journal of Magnetism and Magnetic Materials (2023).

Focus: Study of the magnetic, optoelectronic, and structural properties of Ni-Cu spinel ferrites, including experimental and theoretical (DFT) approaches.

Dielectric and Electrical Transport in Ni-Cu Spinel Ferrites:

Publication: “Structural, dielectric, and electrical transport properties of Al3+ substituted nanocrystalline Ni-Cu spinel ferrites prepared through the sol–gel route.”

Journal: Results in Physics (2022).

Focus: Analysis of dielectric and electrical transport properties in Al3+ substituted Ni-Cu spinel ferrites synthesized using the sol-gel method.

Structural and Magnetic Properties of Ni-Zn Ferrites:

Publication: “Structural, magnetic, and electrical properties of Ni0.38−xCu0.15+yZn0.47+x−yFe2O4 synthesized by sol–gel auto-combustion technique.”

Journal: Journal of Materials Science: Materials in Electronics (2021).

Conclusion:

  • Suitability for the Award: Based on the evaluation of strengths and areas for improvement, the researcher appears highly suitable for the “Best Researcher Award.” Their significant contributions to their field, coupled with a track record of innovation and leadership, make them a strong candidate.
  • Final Recommendation: While the researcher is highly qualified, they could further enhance their candidacy by expanding the impact of their work, engaging more with the broader community, and contributing to initiatives that promote diversity and sustainability in research.

Md Atiqur Rahman | Heat transfer | Best Researcher Award

Assoc Dr.  Vignan’s Foundation for Science, Technology & Research (Deemed to be University), india

The user has a strong academic background with a Ph.D. (submitted) from Birla Institute of Technology, Mesra, and an M.Tech from Visvesvaraya Technological University, Belgaum. With 3.5 years of experience, they have served as a Lecturer at M.V.J Polytechnic, Bangalore, an Assistant Professor at Sri Venkatesh Perumal College of Engineering & Technology, Puttur, and a Guest Lecturer at BIT University Polytechnic, Mesra. Currently, they are an Assistant Professor at Vignan’s Foundation for Science, Technology & Research (Deemed to be University), Guntur, where they aim to leverage their skills and experience to foster academic excellence and contribute to the success of their students.

 

Professional Profiles:

🎯 Career Objective:

I aim to build a successful career by working with committed and dedicated professionals. My goal is to achieve a challenging position in the field of education where I can utilize my skills and experience to help students make significant improvements in their academic performance.

🎓 Educational Qualifications:

(Ph.D): Birla Institute of Technology, Mesra (BIT, Mesra) – SubmittedM.Tech: Visvesvaraya Technological University (V.T.U.), Belgaum – B T L I T M, Bangalore – First ClassB.E: Visvesvaraya Technological University (V.T.U.), Belgaum – R.E.C Bhalki, Karnataka – First Class

👨‍🏫 Work Experience 

Lecturer at M.V.J Polytechnic, Bangalore – June 2011 to Feb 2014Assistant Professor at Sri Venkatesh Perumal College of Engineering & Technology, Puttur – June 2016 to April 2017Guest Lecturer at BIT University Polytechnic, Mesra – Jan 2018 to Aug 2020Assistant Professor at Vignan’s Foundation for Science, Technology & Research (Deemed to be University), Guntur – June 2024 to Present

Strengths for the Award

  1. Solid Educational Foundation: The individual has a strong academic background with a Ph.D. (submitted) from Birla Institute of Technology, Mesra, and an M.Tech from Visvesvaraya Technological University (V.T.U.), both highly regarded institutions in India. This indicates a solid foundation in their field of expertise.
  2. Diverse Teaching Experience: With 3.5 years of work experience across various institutions, the candidate has demonstrated versatility and dedication to education. Their roles have ranged from Lecturer to Assistant Professor, which highlights their ability to engage with students at different levels of higher education.
  3. Focus on Education and Student Improvement: The career objective emphasizes a commitment to helping students achieve academic success, which aligns with the responsibilities of an educator and researcher. This dedication to student improvement is a key strength, especially in the context of research that can directly impact educational outcomes.
  4. Research Contributions: Although specific research publications are not listed, the individual’s academic journey, culminating in a Ph.D., suggests active involvement in research. Their experiences at institutions like BIT, Mesra, likely involve significant research contributions that could make them a strong candidate for the award.

Areas for Improvement

  1. Research Publications and Impact: To strengthen their candidacy, it would be beneficial for the individual to highlight specific research contributions, including publications in reputable journals, conference presentations, or patents. Quantifying the impact of their research through citations or practical applications would further enhance their profile.
  2. Leadership and Collaboration: While the individual has teaching experience, demonstrating leadership in research projects or collaborations with other researchers could further solidify their standing as a top researcher. Participation in or leading interdisciplinary research projects could also be a valuable addition to their resume.
  3. Visibility and Outreach: Increasing their visibility within the academic community through conference presentations, workshops, or guest lectures could enhance their reputation as a researcher. Additionally, outreach activities, such as mentoring students in research, could showcase their ability to inspire and lead future researchers.

 

✍️Publications Top Note :

Thermo-fluid performance of a heat exchanger with a novel perforated flow deflector type conical baffles

Authors: Rahman, M.A., Dhiman, S.K.

Journal: Journal of Thermal Engineering

Year: 2024

Volume: 10

Issue: 4

Pages: 868–879

Citations: 0

Thermal hydraulic performance of a tubular heat exchanger with in-line perforated baffle with shutter type saw tooth turbulator

Author: Rahman, M.A.

Journal: Heat Transfer

Year: 2024

Volume: 53

Issue: 5

Pages: 2234–2256

Citations: 2

Assessment of improving heat exchanger thermal performance through implementation of swirling flow technology

Authors: Rahman, M.A., Hasnain, S.M.M., Zairov, R.

Journal: International Journal of Thermofluids

Year: 2024

Volume: 22

Article ID: 100689

Citations: 1

Access: Open access

The effect of triangular shutter type flow deflector perforated baffle plate on the thermofluid performance of a heat exchanger

Author: Rahman, M.A.

Journal: Heat Transfer

Year: 2024

Volume: 53

Issue: 2

Pages: 939–956

Citations: 5

The influence of geometrical and operational parameters on thermofluid performance of discontinuous colonial self-swirl-inducing baffle plate in a tubular heat exchanger

Author: Rahman, M.A.

Journal: Heat Transfer

Year: 2024

Volume: 53

Issue: 2

Pages: 328–345

Citations: 6

Enhancing heat exchanger performance with perforated/non-perforated flow modulators generating continuous/discontinuous swirl flow: A comprehensive review

Authors: Rahman, M.A., Hasnain, S.M.M.

Journal: Heat Transfer

Year: 2024

Status: Article in Press

Citations: 0

Access: Open access

Study the effect of axially perforated baffle plate with multiple opposite-oriented trapezoidal flow deflectors in an air–water tubular heat exchanger

Author: Rahman, M.A.

Journal: World Journal of Engineering

Year: 2024

Status: Article in Press

Citations: 3

THERMO-FLUID PERFORMANCE COMPARISON OF AN IN-LINE PERFORATED BAFFLE WITH OPPOSITELY ORIENTED RECTANGULAR-WING STRUCTURE IN TURBULENT HEAT EXCHANGER

Author: Rahman, A.

Journal: International Journal of Fluid Mechanics Research

Year: 2024

Volume: 51

Issue: 1

Pages: 15–30

Citations: 5

Performance evaluation of turbulent circular heat exchanger with a novel flow deflector-type baffle plate

Authors: Rahman, M.A., Dhiman, S.K.

Journal: Journal of Engineering Research (Kuwait)

Year: 2024

Article ID: 100105

Citations: 13

Status: Article in Press

Access: Open access

Experimental Investigations on Single-Phase Heat Transfer Enhancement in an Air-To-Water Heat Exchanger with Rectangular Perforated Flow Deflector Baffle Plate

Author: Rahman, M.A.

Journal: International Journal of Thermodynamics

Year: 2023

Volume: 26

Issue: 4

Pages: 31–39

Citations: 10

Conclusion

The individual appears to be a strong candidate for a “Best Researcher Award,” particularly if they can showcase specific research achievements and contributions to their field. Their educational background, coupled with diverse teaching experience, positions them well for recognition. However, to maximize their chances, they should focus on highlighting their research impact, demonstrating leadership in their field, and increasing their visibility within the academic community.

levent dirikolu | Pharmacology and Analytical Chemistry | Best Researcher Award

Prof. levent dirikolu | Pharmacology and Analytical Chemistry | Best Researcher Award

Prof. Louisiana State University, United States

Levent Dirikolu is a distinguished Professor of Pharmacology at Louisiana State University, with a DVM from Ankara University and advanced degrees in Veterinary Science and Pharmacology from the University of Kentucky. His research focuses on pharmacokinetics, pharmacodynamics, toxicokinetics, and drug metabolism. Notably, he has led significant projects on drug testing, including funding from the Louisiana State Racing Commission and ongoing research on anti-glioblastoma compounds. Dirikolu’s honors include multiple Pfizer Research Excellence Awards and a Distinguished Faculty Service Award from LSU. His contributions span comparative pharmacokinetics and drug design, with recent studies on pioglitazone for cats and lomustine for canine lymphoma, among others.

 

Professional Profiles:

Personal Statement🔬

My laboratory focuses on pharmacokinetics, pharmacodynamics, toxicokinetics, and molecular, clinical, and analytical pharmacology/toxicology. I have been involved in various clinical pharmacology studies investigating the safety, efficacy, PK, and PD of new drugs using animal models. With advanced training in PK modeling and analytical pharmacology/toxicology, I am well-positioned to lead research on “New anti-glioblastoma metabolic compounds with high potential for Blood Brain Barrier penetration.”

B. Ongoing Projects

Stanton Foundation: Mitigating Treatment Costs for Addison’s Disease in DogsPI: Daniel K. Langlois, Co-Is: Levent Dirikolu et al.Period: Dec 20, 2022 – presentFunding: $65,492Louisiana State Racing Commission: Drug TestingPI: Levent DirikoluPeriods:July 1, 2020 – June 30, 2021: $1,442,233July 1, 2021 – June 30, 2022: $1,389,185July 1, 2022 – June 30, 2023: $1,450,000

C. Positions and Honors

Positions and Employment2024-present: Director, Center for Clinical Innovation, LSU SVM, Baton Rouge, LA.2016-present: Professor, LSU SVM, Baton Rouge, LA.2013-2015: Associate Professor, University of Illinois, CVM, Urbana, IL.2007-2013: Assistant Professor, University of Illinois, CVM, Urbana, IL.2003-2006: Assistant Professor, Tuskegee University, CVM, Tuskegee, AL.2001-2002: Post-doctoral Fellow, University of Kentucky, Lexington, KY.Other Experience and Professional Memberships2003-present: American Veterinary Medical Association (AVMA)2007-present: American Academy of Veterinary Pharmacology and Therapeutics2003-2006: Director, Core Laboratory, Tuskegee University, CVMNAH, Tuskegee, AL.

Honors

1992: Graduated with honors from Ankara University School of Veterinary Medicine (fourth best student).1997: Honor student program at the University of Kentucky for M.V.Sc (GPA: 3.903).2003: Involved in developing the first FDA-approved therapeutic medications for Equine Protozoal Myeloencephalitis.2005: Faculty performance award, Tuskegee University, College of Veterinary Medicine.2005: Norden Distinguished Teacher of The Year award, Tuskegee University, College of Veterinary Medicine.2006: Pfizer Animal Health Research Excellence Award, Tuskegee University, College of Veterinary Medicine.2008: Arnold O. Beckman Research Award, University of Illinois, College of Veterinary Medicine.2011: CVM Dr. Erwin Small Teaching Excellence Award in Veterinary Medicine, University of Illinois.2011: Pfizer Research Excellence Award, University of Illinois, College of Veterinary Medicine.2012: Dr. Erwin Small Teaching Excellence Award in Veterinary Medicine, University of Illinois.2023: Distinguished Faculty Service Award, Louisiana State University, School of Veterinary Medicine.

D. Contribution to Science

My research spans comparative pharmacokinetics, pharmacodynamics, toxicokinetics, and drug metabolism. I aim to establish a globally recognized pharmacology program focused on the safety and efficacy of investigational new drugs. My expertise facilitates the translation of research findings to clinical applications and the use of human medicines in animal health. Future goals include expanding collaboration within the veterinary college and securing extramural funding.Examples of Studies:

Investigation of Pioglitazone for Diabetes and Hepatic Lipidosis in CatsResearch on the efficacy of pioglitazone for treating diabetes and hepatic lipidosis in cats.Key Publications:Clark M, Hoenig M, Ferguson D, Dirikolu L. Pharmacokinetics of pioglitazone in lean and obese cats. J. Vet. Pharmacol. Ther. 2012.Clark M, Thomaseth K, Dirikolu L, Ferguson DC, Hoenig M. Effects of pioglitazone on insulin sensitivity and serum lipids in obese cats. JVIM, 2014.Pharmacokinetics and Cytotoxicity of Lomustine in DogsExamined lomustine’s pharmacokinetics and toxicity in dogs with lymphoma.Key Publications:Chakkath T, Lavergne SN, Fan TM, Bunick D, Dirikolu L. Alkylation and Carbamylation Effects of Lomustine and Its Major Metabolites in Canine Cells. Vet. Sci. 2015.Dirikolu L, McFadden ET, Ely KJ, ElkHoly H, Lehner AF, Thompson K. Clonidine in the horse: Its identification, detection, and clinical pharmacology. Vet. Ther., 2006.Drug Discovery and Design ResearchCollaboration on PK parameters of PAC-1 and other investigational drugs in mouse and dog models.Key Publications:Botham RC, Fan TM, Im I, Borst LB, Dirikolu L, Hergenrother PJ. Dual Small-Molecule Targeting of Procaspase-3. J Am Chem Soc. 2014.Garrett EF, Dirikolu L, Grover GS. Milk and serum concentration of ceftiofur following intramammary infusion in goats. J Vet Pharmacol Ther. 2015.

Evaluation for Best Researcher Award: Levent Dirikolu

Strengths for the Award:

  1. Extensive Expertise and Research Impact:
    • Dr. Levent Dirikolu’s extensive background in pharmacology and toxicology is demonstrated through his research in pharmacokinetics, pharmacodynamics, toxicokinetics, and drug metabolism. His work spans various species and includes both clinical and analytical pharmacology, showcasing a broad and deep understanding of his field.
  2. High-Impact Research and Publications:
    • His significant contributions are evidenced by numerous publications in reputable journals, including high-impact studies on drugs such as pioglitazone, lomustine, and diclazuril. These studies not only advance scientific knowledge but also address practical issues in veterinary medicine, highlighting his research’s real-world applications.
  3. Successful Grant Acquisition and Ongoing Projects:
    • Dr. Dirikolu has secured substantial funding for critical projects, such as drug testing for the Louisiana State Racing Commission and research on mitigating treatment costs for Addison’s Disease in dogs. This track record of successful grant acquisition demonstrates his ability to secure and manage large-scale research projects effectively.
  4. Recognition and Honors:
    • His achievements have been acknowledged through various awards, including the Pfizer Research Excellence Award and the Distinguished Faculty Service Award. These accolades reflect his outstanding contributions to research and teaching in veterinary pharmacology.
  5. Leadership and Professional Service:
    • As the Director of the Center for Clinical Innovation at LSU and a member of professional organizations like the American Veterinary Medical Association and the American Academy of Veterinary Pharmacology and Therapeutics, Dr. Dirikolu’s leadership and service further underscore his commitment to advancing his field.

Areas for Improvement:

  1. Broader Interdisciplinary Collaboration:
    • While Dr. Dirikolu has a strong foundation in veterinary pharmacology, expanding his collaborative efforts to include more interdisciplinary research could enhance the scope and impact of his work. Collaborating with researchers in related fields like human medicine or advanced molecular biology could provide new insights and applications.
  2. Increased Focus on Emerging Areas:
    • Incorporating emerging research areas such as personalized medicine or the use of advanced technologies (e.g., machine learning in pharmacokinetic modeling) could further strengthen his research program. Staying at the forefront of these trends could enhance his contributions and relevance in the field.

 

✍️Publications Top Note :

A review of current chemistry, pharmacology, and regulation of endogenous anabolic steroids testosterone, boldenone, and nandrolone in horses”

Journal: Journal of Veterinary Pharmacology and Therapeutics

Date: July 2023

DOI: 10.1111/jvp.13397

ISSNs: 0140-7783, 1365-2885

Contributors: Levent Dirikolu, Andreas F. Lehner

“Total Carbon Dioxide (TCO2) Concentrations in Thoroughbred and Quarter Racehorses in Louisiana”

Journal: Journal of Equine Veterinary Science

Date: January 6, 2023

DOI: 10.1016/j.jevs.2023.104220

ISSN: 0737-0806

Contributors: Levent Dirikolu, Pamela Waller, Kesha Malveaux, Cam H. Lucas, Izabela Lomnicka, Ashley Pourciau, Hayat Bennadji, Chin-Chi Liu

“Guanabenz in the horse – A preliminary report on clinical effects and comparison to clonidine and other alpha-2 adrenergic agonists”

Journal: Pferdeheilkunde Equine Medicine

Date: 2022

DOI: 10.21836/pem20220607

ISSN: 0177-7726

Contributors: Levent Dirikolu, A F Lehner, L Dirikolu, T Tobin

“Simultaneous quantification of caffeine and its main metabolites by gas chromatography mass spectrometry in horse urine”

Journal: Biomedical Chromatography

Date: October 2022

DOI: 10.1002/bmc.5445

ISSNs: 0269-3879, 1099-0801

Contributor: Levent Dirikolu

“Plasma concentrations of diclazuril following oral administration of diclazuril and diclazuril sodium salt to cattle”

Journal: Journal of Veterinary Pharmacology and Therapeutics

Date: July 2022

DOI: 10.1111/jvp.13062

ISSNs: 0140-7783, 1365-2885

Contributor: Levent Dirikolu

“The medication violations in racehorses at Louisiana racetracks from 2016 to 2020”

Journal: Veterinary Medicine and Science

Date: January 6, 2022

DOI: 10.1002/vms3.724

PMID: 34989156

PMC: PMC8959255

Contributor: Levent Dirikolu

“Pharmacokinetic profiles of three dose rates of morphine sulfate following single intravenous, intramuscular, and subcutaneous administration in the goat”

Journal: Journal of Veterinary Pharmacology and Therapeutics

Date: September 7, 2021

DOI: 10.1111/jvp.13011

PMID: 34494277

Contributor: Levent Dirikolu

“Dexamethasone serum concentrations after intravenous administration in horses during race training”

Journal: Comparative Exercise Physiology

Date: April 12, 2021

DOI: 10.3920/cep200015

ISSNs: 1755-2540, 1755-2559

Contributor: Levent Dirikolu

“Liquid chromatography/tandem mass spectrometric analysis of penicillamine for its pharmacokinetic evaluation in dogs”

Journal: Toxicology Mechanisms and Methods

Date: September 10, 2020

DOI: 10.1080/15376516.2020.1814467

PMID: 32854553

Contributor: Levent Dirikolu

“Diffusion of enrofloxacin to pregnancy fluids and effects on fetal cartilage after intravenous administration to late pregnant mares”

Journal: Equine Veterinary Journal

Date: January 2, 2019

DOI: 10.1111/evj.13044

PMID: 30449030

Contributor: Levent Dirikolu

“The effect of sodium bicarbonate and validation of Beckman Coulter AU680 analyzers for measuring total carbon dioxide (TCO₂) concentrations in horse serum”

Journal: Veterinary Medicine and Science

Date: October 25, 2017

DOI: 10.1002/vms3.82

PMID: 29152319

PMC: PMC5677778

Contributor: Levent Dirikolu

“Characterization of long-term elution of platinum from carboplatin-impregnated calcium sulfate hemihydrate beads in vitro by two distinct sample collection methods”

Journal: American Journal of Veterinary Research

Date: May 1, 2017

DOI: 10.2460/ajvr.78.5.618

PMID: 28441046

Contributor: Levent Dirikolu

“Pharmacokinetics and derivation of an anticancer dosing regimen for the novel anti-cancer agent isobutyl-deoxynyboquinone (IB-DNQ), a NQO1 bioactivatable molecule, in the domestic felid species”

Journal: Investigational New Drugs

Date: December 14, 2016

DOI: 10.1007/s10637-016-0414-z

PMID: 27975234

Contributor: Levent Dirikolu

“Elution of platinum from carboplatin-impregnated calcium sulfate hemihydrate beads in vitro”

Journal: American Journal of Veterinary Research

Date: November 1, 2016

DOI: 10.2460/ajvr.77.11.1252

PMID: 27805450

Contributor: Levent Dirikolu

“Evaluation of the effect of fluconazole on the pharmacokinetics of cyclosporin A in healthy dogs after a single dose and at steady-state”

Journal: Journal of Veterinary Pharmacology and Therapeutics

Date: September 1, 2016

DOI: 10.1111/jvp.12352

PMID: 27586063

Contributor: Levent Dirikolu

“Tear film concentrations of doxycycline following oral administration in ophthalmologically normal dogs”

Journal: Journal of the American Veterinary Medical Association

Date: September 1, 2016

DOI: 10.2460/javma.249.5.508

PMID: 27556265

Contributor: Levent Dirikolu

“Alkylation and Carbamylation Effects of Lomustine and Its Major Metabolites and MGMT Expression in Canine Cells”

Journal: Veterinary Sciences

Date: April 24, 2015

DOI: [10.

Conclusion:

Dr. Levent Dirikolu is a highly qualified candidate for the Best Researcher Award. His extensive expertise in pharmacology and toxicology, demonstrated through impactful research and significant contributions to the field, makes him a standout nominee. His successful track record in securing research funding and the recognition he has received for his work reflect his excellence and dedication. By expanding his interdisciplinary collaborations and exploring emerging research areas, Dr. Dirikolu could further amplify his impact and continue to lead advancements in veterinary pharmacology.

Xiaolu Huang | Rapid Diagnostic Test | Excellence in Innovation

Dr. Xiaolu Huang | Rapid Diagnostic Test | Excellence in Innovation

Dr. University of Michigan, United States

Dr. Xiaolu Huang is a Research Fellow at the University of Michigan, with a focus on microdetector, preconcentrator, and microreactor fabrication for gas chromatography and electronic-nose sensing systems. She has published 17 SCI-indexed articles, with over 800 citations, and has been involved in 4 completed and 2 ongoing research projects. She has also contributed to 2 industry projects and has 1 published patent and 2 under process. Her research has led to the development of novel fabrication processes and devices with high performance and stability, with some being preliminarily commercialized. She is a member of ASME and IEEE.

Professional Profiles:

Academic and Professional Background📚

Dr. Xiaolu Huang is a Research Fellow at the University of Michigan, focusing on microdetector, preconcentrator, and microreactor fabrication for gas chromatography and electronic-nose sensing systems 🔬. She has published over 15 SCI-indexed articles with over 800 citations 📊 and has been granted several fellowships and scholarships 🎓.

Research and Innovations 🔬

– Completed/Ongoing Research Projects: 4 Completed, 2 Ongoing 📈
– Citation Index: SCI, Scopus, EI 📊
– Consultancy/Industry Projects: 2 Industry Projects 💼
– Patents Published/Under Process: 1 Published, 2 Under Process 📜
– Journals Published: 17 articles in indexed journals 📄

Contributions  💡

Dr. Huang’s research focuses on detecting volatile organic compounds (VOCs) for medical diagnosis and pandemic control 🏥. She developed a novel fabrication process using nanofabrication and additive manufacturing, resulting in high-performance and stable devices 💻.

Dr. Xiaolu Huang’s suitability for the Excellence in Innovation Award:

Strengths:

1. Impressive Research Output: Dr. Huang has published 17 articles in indexed journals, with over 800 citations, demonstrating her significant contributions to the field.
2. Innovative Research Focus: Her research on microdetector, preconcentrator, and microreactor fabrication for micro gas chromatography systems and electronic-nose sensing systems showcases innovative thinking.
3. Interdisciplinary Collaborations: Dr. Huang’s work on NFC and NIH projects as a core member highlights her ability to collaborate across disciplines.
4. Commercialization of Research: Some of her devices have been preliminarily commercialized, demonstrating the potential impact of her research.

Areas for Improvement:

1. More Detailed Information on Innovations: While Dr. Huang’s research focus is innovative, more specific details on the novelty and impact of her work would strengthen her application.
2. Quantifiable Metrics: Providing more quantifiable metrics on the performance and stability of her devices would further demonstrate their excellence.
3. Broader Impact: While her research has potential medical applications, highlighting broader societal or industrial impacts would enhance her application.

Conclusion:

Dr. Xiaolu Huang’s innovative research and significant publications make her a strong candidate for the Excellence in Innovation Award. By addressing the areas for improvement, she can further demonstrate the impact and novelty of her work, making her application even more compelling.

✍️Publications Top Note :

– Title: Portable comprehensive two-dimensional micro-gas chromatography using an integrated flow-restricted pneumatic modulator
– Authors: Xiaolu Huang, Ming-Wei-Hao Li, Wen Zang, et al.
– Journal: Microsystems and Nanoengineering
– Year: 2022
– Volume: 8
– Issue: 1
– Pages: 115
– Citations: 7

– Title: High-Sensitivity Micro-Gas Chromatograph-Photoionization Detector for Trace Vapor Detection
– Authors: Wei-Hao Li, Ming-Wei-Hao Li, Abhishek Ghosh, et al.
– Journal: ACS Sensors
– Year: 2021
– Volume: 6
– Issue: 6
– Pages: 2348-2355
– Citations: 33

– Title: Microfabricated ionic liquid column for separations in dry air
– Authors: Ming-Wei-Hao Li, Xiaolu Huang, Huan Zhu, et al.
– Journal: Journal of Chromatography A
– Year: 2020
– Volume: 1620
– Pages: 461002
– Citations: 11