Anish Kumar J | Electrical | Best Researcher Award

Dr. Anish Kumar J | Electrical | Best Researcher Award

Associate Professor | Saveetha Engineering College | India

Dr. Anish Kumar J is an accomplished academic and researcher in Electrical and Electronics Engineering with nearly two decades of teaching, research, and project supervision experience. Currently serving as an Associate Professor at Saveetha Engineering College, he has guided six Ph.D. scholars under Anna University and contributed significantly to advancements in machine learning, signal processing, and electrical systems. His academic journey spans a B.E. in Electrical and Electronics Engineering, an M.E. in Applied Electronics, and a Ph.D. in Information and Communication Engineering from Anna University. Dr. Anish Kumar J has worked on government-funded projects, including collaborations with NVIDIA, focusing on integrating machine learning and deep learning into IoT systems. His Ph.D. research emphasized predictive modeling of induction motor performance using multimodal sensor signals and machine learning approaches. With a strong record in teaching, mentoring, and applied research, he continues to contribute to both academia and industry through impactful projects and innovation.

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Education

Dr. Anish Kumar J pursued his academic career with consistent excellence across engineering and applied research. He completed his schooling at L.M.S. Higher Secondary School, Palliyadi, securing SSLC under the Tamil Nadu State Board of Secondary Education. He obtained his B.E. degree in Electrical and Electronics Engineering from C.S.I. Institute of Technology, Manonmaniam Sundaranar University, in Building on this foundation, he pursued an M.E. in Applied Electronics at PSNA College of Engineering & Technology, Anna University, graduating. His postgraduate research involved enhancing exemplar algorithms with image processing techniques for object removal, he earned his Ph.D. in Information and Communication Engineering from RMK Engineering College, Anna University. His doctoral thesis focused on predicting rotor slot size variations in induction motors using multimodal sensor signals and machine learning methods, applying MATLAB and wavelet transform techniques to advance predictive maintenance in electrical machines.

Experience

Dr. Anish Kumar J has an extensive teaching and research career spanning  He began as a Lecturer in ECE at The Rajaas Engineering College, followed by S.S.M. Engineering College and LCR College of Engineering & Technology, he has served as Associate Professor in the School of Computing and Technology (SCOFT) at Saveetha Engineering College. Over these years, he has guided six Ph.D. scholars under Anna University and contributed to curriculum development, research supervision, and collaborative projects. He has coordinated funded projects, including a notable NVIDIA-supported grant on integrating machine learning and deep learning in IoT systems. His teaching expertise spans electrical systems, machine learning applications, and applied electronics, while his research extends to predictive modeling, IoT, and smart energy systems. His career demonstrates a balance between academic leadership, research innovation, and mentoring the next generation of engineers and scientists.

Awards and Honors

Dr. Anish Kumar J has earned recognition for his academic excellence, research contributions, and leadership in engineering education. He successfully secured a government-funded project in collaboration with NVIDIA, titled Integrating Machine Learning and Deep Learning in Real-time IoT Systems, with a grant. His Ph.D. thesis work on induction motor fault prediction using multimodal sensor signals and machine learning was acknowledged as an innovative contribution to predictive maintenance and smart electrical systems. Additionally, he received approval for ATAL FDP proposals under the AICTE scheme for the reflecting his strong engagement in faculty development and capacity-building initiatives. His continuous role as a supervisor for six Ph.D. scholars at Anna University further demonstrates the trust and recognition he has earned in the academic community. While his achievements highlight research and academic leadership, ongoing engagement with international collaborations and high-impact publications will further enhance his honors portfolio.

Research Focus

Dr. Anish Kumar J focuses on interdisciplinary research in machine learning, signal processing, and electrical engineering applications. His Ph.D. work centered on predicting rotor slot size variations in induction motors using multimodal sensor signals and machine learning models, integrating wavelet transforms and MATLAB-based algorithms. His broader research interests include electrical machine diagnostics, IoT-enabled smart systems, deep learning integration, and predictive maintenance. A key area of his work is applying AI and ML models to improve fault detection, enhance system efficiency, and develop intelligent industrial applications. He also explores algorithmic enhancements in image processing, with applications ranging from object recognition to optimization of real-time systems. Through funded projects, such as the NVIDIA-supported IoT initiative, he has expanded his research to practical, real-time contexts. His focus on bridging traditional electrical engineering with modern computational techniques reflects his commitment to advancing next-generation smart technologies and sustainable engineering solutions.

Publication Top Notes 

A Comprehensive Review and Analysis of the Allocation of Electric Vehicle Charging Stations in Distribution Networks
Cited By; 143
Year; 2024

Induction motor rotor slot variation measurement using logistic regression
Charging Stations in Distribution Networks
Cited By; 22
Year; 2022

Conclusion

The candidate’s extensive research experience, innovative research projects, and leadership in guiding Ph.D. scholars make them a strong contender for the Best Researcher Award. With further development of their publication record, interdisciplinary collaborations, and global reach, they could solidify their position as a leading researcher in their field.

Dr. Shan Huang | Urban Planning | Best Researcher Award

Dr. Shan Huang | Urban Planning | Best Researcher Award

Researcher | Shenyang Jianzhu University | China

Huang Shan is a dedicated doctoral candidate at the School of Architecture and Urban Planning, Shenyang Jianzhu University. With a strong foundation in architectural theory, urban design, and sustainable development, Huang’s research interests focus on the integration of ecological design principles, urban resilience, and heritage protection in rapidly evolving cities. His work bridges traditional architectural practices with modern computational and planning techniques, offering innovative approaches to urban challenges in China and beyond. Huang is committed to exploring how cities can develop sustainably while maintaining cultural identity, with a keen interest in smart city planning and the role of architecture in social well-being. Through academic training and research projects, he has developed advanced analytical and design skills, as well as the ability to work across multidisciplinary teams. As an emerging scholar, Huang Shan is preparing to contribute impactful research and practical solutions for the future of urban environments.

Professional Profile

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Education

Huang Shan is pursuing a doctoral degree at the School of Architecture and Urban Planning, Shenyang Jianzhu University, where his studies concentrate on architectural design methods, sustainable city planning, and urban resilience strategies. His doctoral research investigates the relationship between ecological principles and architectural practices, aiming to integrate theory with practical urban solutions. Before beginning his doctoral studies, Huang completed a master’s degree in architecture and urban planning, where his thesis explored strategies for balancing urban growth with environmental conservation. His undergraduate training in architecture provided him with a solid foundation in design, construction methods, and urban studies, equipping him with a broad perspective on the built environment. Throughout his academic journey, he has engaged with diverse areas, including spatial analysis, heritage conservation, and smart urban systems. His education reflects a balance of theoretical rigor and practical relevance, enabling him to address contemporary architectural and planning challenges with creativity and depth.

Experience

As a doctoral candidate, Huang Shan has accumulated valuable academic and research experience through participation in collaborative projects, teaching assistance, and field studies. He has been involved in urban planning research initiatives at Shenyang Jianzhu University, contributing to projects focused on sustainable community design, urban resilience, and the adaptive reuse of heritage sites. His work emphasizes both theoretical frameworks and practical applications, combining urban data analysis with architectural design strategies. Huang has also contributed to academic workshops and seminars, where he engaged in discussions on topics such as smart cities, ecological urbanism, and cultural landscape preservation. He has supported undergraduate students through tutorials and guidance in architectural design studios, gaining teaching and mentoring experience. In addition, he has presented aspects of his research at academic forums, strengthening his communication and presentation skills. His experiences highlight his development as both a researcher and a practitioner in architecture and urban planning.

Awards and Honors

Throughout his academic career, Huang Shan has been recognized for his dedication and contributions to architectural research and education. He has received academic excellence scholarships during his studies, reflecting consistent high performance in coursework and research. His participation in design competitions has earned him recognition for innovative solutions in sustainable building and urban planning, where he successfully integrated modern design with ecological principles. Huang has also been acknowledged at university and departmental levels for his active engagement in academic research projects and community outreach activities. His work has been featured in student research forums, earning awards for originality and relevance to contemporary urban challenges. As a promising young researcher, he has also benefited from institutional support through research assistantships and participation in funded projects. These awards and honors underscore his commitment to advancing knowledge in architecture and urban planning while contributing meaningfully to academic and professional communities.

Research Focus

Huang Shan’s research focuses on the intersection of architecture, urban planning, and sustainability. He is particularly interested in ecological urbanism, green architecture, and strategies that foster resilient and livable cities. His doctoral research explores how design principles can harmonize urban growth with environmental protection, addressing the challenges of climate change, energy efficiency, and urban sprawl. He has a keen interest in cultural heritage conservation, investigating ways to adapt traditional architectural practices within the context of modern development. Huang also explores the role of smart technologies in shaping future cities, analyzing how digital tools and data-driven planning can enhance urban life. His work emphasizes interdisciplinary approaches, drawing from architecture, environmental studies, and urban sociology. By integrating theory, simulation, and design practice, his research contributes to a holistic understanding of sustainable urban environments. His ultimate goal is to bridge academic research with real-world urban solutions in China and beyond.

Publication Top Notes 

The Impact of Built Environment on Urban Vitality—A Multi-Scale Geographically Weighted Regression Analysis in the Case of Shenyang, China

Year: 2025

Urban Renewal Strategy Guided by Rail Transit Development Based on the “Node–Place–Revenue” Model: Case Study of Shenyang Metro Line 1
Year: 2025

Conclusion

Huang Shan’s academic background and research potential make them a promising candidate for the Best Researcher Award. With further development of their publication record, interdisciplinary collaboration, and global reach, they could solidify their position as a leading researcher in architecture and urban planning.

Prof. Dr. Hong Cai | Framework Materials | Best Researcher Award

Prof. Dr. Hong Cai | Framework Materials | Best Researcher Award

Supervisor | Hanshan Normal University | China

Professor Cai Hong is a distinguished chemist and Senior Member of the Chinese Chemical Society, currently serving as Professor and Master’s Supervisor at Hanshan Normal University. She earned her doctorate in Biochemistry and Molecular Biology from Shantou University. Her academic career is marked by excellence in research, teaching, and mentorship, with over high-impact publications in journals such as J. Am. Chem. Soc., Angew. Chem. Int. Ed., and Coord. Chem. Rev.. Professor Cai specializes in functional biological coordination polymers, host–guest chemistry, and their biological applications, contributing significantly to advancing the field of supramolecular chemistry. She has successfully led multiple projects funded by the National Natural Science Foundation of China and the Guangdong Provincial Natural Science Foundation, among others. Alongside research, she is deeply committed to education, guiding students in national and provincial competitions, and has earned multiple accolades for her outstanding teaching and mentorship.

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Education

Cai Hong pursued her doctoral studies in Biochemistry and Molecular Biology at Shantou University, where she received her Ph.D. During her doctoral training, she developed a strong foundation in coordination chemistry, supramolecular chemistry, and their biological implications, laying the groundwork for her later research on functional coordination polymers and host–guest systems. Her education combined rigorous coursework, hands-on laboratory experience, and active participation in collaborative projects, enabling her to build expertise in both experimental and applied chemistry. Under the guidance of experienced mentors, she honed her skills in molecular design, synthesis, and characterization techniques, while contributing to impactful research published in international journals. Her doctoral training also emphasized interdisciplinary approaches, bridging biochemistry, materials chemistry, and molecular biology. This academic background has equipped her with the knowledge and skills necessary to advance innovative research, train the next generation of scientists, and contribute to the chemical sciences community.

Experience

Professor Cai Hong has extensive research, teaching, and supervisory experience at Hanshan Normal University, where she serves as Professor and Master’s Supervisor. Her research career is highlighted by over publications in top international journals and successful leadership of projects funded by national and provincial foundations. She has presided over one National Natural Science Foundation project, three Guangdong Provincial General Projects, and multiple collaborations with key laboratories and educational institutions. Beyond research, she is a dedicated educator, teaching courses such as Biochemistry, Inorganic Chemistry, Basic Chemistry Experiments, and Academic Writing. She has actively supervised undergraduate and graduate students in national and provincial innovation competitions, including the Challenge Cup and Guangdong Climbing Plan, achieving notable awards. With her dual focus on research and education, Professor Cai bridges cutting-edge scientific exploration with the development of teaching and professional skills among her students, contributing to both academic and societal advancement.

Research Focus

Professor Cai Hong’s research is centered on the design and synthesis of functional biological coordination polymers, exploring their structural versatility and potential applications in biology. Her work delves into supramolecular host–guest chemistry, focusing on molecular recognition, self-assembly, and responsive systems that address challenges in biological and medicinal chemistry. She integrates fundamental principles of coordination chemistry with innovative approaches to develop materials with tunable properties for bio-related applications. By combining synthesis, structural characterization, and functional studies, her research contributes to understanding structure–function relationships in complex molecular systems. Beyond material development, her studies emphasize translational applications, such as targeted delivery systems, sensing, and catalytic functions in biological environments. Her interdisciplinary focus bridges chemistry, biology, and material science, leading to publications in leading journals and projects supported by major funding agencies. Overall, her research contributes significantly to advancing functional materials with real-world biological and biomedical potential.

Awards and Honors

Professor Cai Hong has received numerous awards recognizing her excellence in teaching, research, and mentorship. At the institutional level, she won first prize in the university-level Young Teachers Teaching Competition, a testament to her innovative teaching style and commitment to student learning. Her dedication has also been recognized with prestigious honors such as the Teaching Excellence Award, the title of Hanjiang Scholar, and the Chaozhou Sanba-Hongqi Holder. These accolades highlight her contributions not only as a researcher but also as a transformative educator. In addition, her guidance has led students to achieve second and third prizes in the Guangdong Provincial Normal University Students Teaching Skills Competition, reflecting her effective mentorship in nurturing talent. She has also been recognized at provincial and national levels for her successful supervision of student projects, further consolidating her reputation as a scholar who integrates research and education to foster innovation and academic excellence.

Publication Top Notes 

Synthesis of a zinc‑cobalt bimetallic adenine metal‑organic framework for the recognition of sulfur‑containing amino acids

Year: 2025

Specific Recognition of Cysteine in a Mixed-Valence Bimetallic Organic Framework with Unique Channel Properties

Year: 2025

Conclusion

Prof. Cai Hong’s impressive research experience, publication record, research funding, and teaching excellence make her a strong candidate for the Best Researcher Award. With some additional interdisciplinary collaboration, global impact, and research translation, she could further solidify her position as a leading researcher in her field.

Rakesh Parida | Energy Storage | Best Researcher Award

Dr. Rakesh Parida | Energy Storage | Best Researcher Award

Researcher | Sungkyunkwan University | South Korea

Dr. Rakesh Parida is an Indian chemist specializing in theoretical and computational chemistry, currently serving as a Postdoctoral Researcher in the Department of Chemistry at Sungkyunkwan University, South Korea, under the supervision of Prof. Jin Yong Lee. His research integrates density functional theory (DFT) and molecular dynamics (MD) simulations to investigate superalkalis, superhalogens, energy storage materials, biomolecular interactions, and small-molecule activation. He earned his Ph.D. from the National Institute of Technology Rourkela, India, with distinction, focusing on the design and applications of super-alkali/halogen complexes and reaction mechanisms. Over the years, Dr. Parida has significantly contributed to computational modeling of advanced materials for energy storage and biophysical systems. research publications in high-impact journals, editorial board membership, international collaborations, and active participation in conferences, he has established himself as a promising scientist in molecular modeling, energy materials, and computational chemical reactivity theory.

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Education

Dr. Rakesh Parida earned his Ph.D. in Theoretical and Computational Chemistry from the National Institute of Technology (NIT) Rourkela, India, in April , securing an excellent. His doctoral thesis, supervised by Prof. Madhurima Jana and Prof. Santanab Giri, centered on a combined density functional theory and molecular dynamics approach to study the design and application of super-alkali/halogen complexes and reaction mechanisms. Before his doctorate, he completed his M.Sc. in Chemistry at Berhampur University, conducting research on “Quality Control Analysis of Sillimanite” under Dr. Satyanarayan Sahoo. His academic journey began with a B.Sc. in Chemistry (Hons.), Physics, and Mathematics from RCM Science College, Khallikote, Odisha, completed in  with a strong foundation in honors papers. His consistent academic excellence and training have shaped his expertise in computational chemistry, materials design, and molecular interactions.

Experience

Currently, Dr. Rakesh Parida works as a Postdoctoral Researcher at Sungkyunkwan University, South Korea focusing on computational modeling of advanced materials and biomolecular interactions under Prof. Jin Yong Lee. During his doctoral training at NIT Rourkela, he was actively engaged in research projects funded by the Department of Science and Technology (DST) in areas such as chemical reaction mechanisms, metal and organo-Zintl clusters, and biomolecular dynamics. He also gained teaching experience as a Teaching Assistant, conducting courses such as General Chemistry, Inorganic Chemistry, Group Theory, Physical Chemistry Lab, and Computational Chemistry Laboratory for undergraduate and postgraduate students. Additionally, he managed laboratory work for B.Tech and M.Sc. programs and mentored five postgraduate students, many of whom are now pursuing Ph.D.s at reputed international universities. His academic journey reflects a blend of advanced research, teaching, and mentoring in computational and theoretical chemistry.

Research Focus

Dr. Rakesh Parida’s research integrates density functional theory (DFT) and molecular dynamics (MD) simulations to explore advanced molecular systems and energy materials. He has designed superalkali complexes based on benzene, borazine, Cu3, and Au3 frameworks, studied Brønsted and Lewis acids from functionalized heterocycles, and modeled frustrated Lewis pairs for small-molecule activation. His computational studies extend to boron-based anion receptor additives for Li-ion batteries, force field generation for unknown atoms, and CO2 reduction pathways. He has analyzed the alkylation processes of Zintl clusters, investigated graphdiyne as an anode material, and studied heterostructures like MXene/borophene for next-generation energy storage. His biophysical work includes examining histidine tautomerism in amyloid-β proteins on Au surfaces to understand Alzheimer’s disease mechanisms. His research contributes to material design for batteries, catalytic activity, biomolecular interactions, and conceptual DFT, bridging fundamental chemical theory with real-world applications in energy storage and biomedicine.

Awards and Honors

Dr. Rakesh Parida has received numerous recognitions for his outstanding research contributions. He was awarded the Juan de la Cierva Scholarship by the Spanish Ministry of Science and the Ultra-High Performance Computing R&D Innovation Support Program from KISTI . His early achievements include qualifying the  with an All-India  examination. He was conferred the InSc Young Researcher Award for his impactful research in theoretical and computational chemistry. He also received DST-SERB Junior Research Fellowship and DST-BRNS Senior Research Fellowship during his Ph.D. training. His editorial contributions include serving as a Board Member for the International Journal of Computational and Theoretical Chemistry since. In addition, he is an active member of the Korean Chemical Society, regularly presenting his research at national and international conferences. These honors reflect his global recognition as an emerging scientist.

Publication Top Notes

On the making of aromatic organometallic superalkali complexes
Year: 2018
Citation: 45

Superalkali ligands as a building block for aromatic trinuclear Cu (i)–NHC complexes
Year: 2019
Citation: 39Solvent free synthesis of ferrocene based rhodamine–hydrazone molecular probe with improved bioaccumulation for sensing and imaging applications
Year: 2019
Citation: 29

Conclusion

Dr. Rakesh Parida’s impressive research experience, publication record, awards, and research funding make him a strong candidate for the Best Researcher Award. With some additional interdisciplinary collaboration, global impact, and research translation, he could further solidify his position as a leading researcher in his field.

Sivagaami Sundari Gunasekaran | Energy Storage | Best Researcher Award

Assist. Prof. Dr. Sivagaami Sundari Gunasekaran | Energy Storage | Best Researcher Award

Assistant Professor Research | B.S. Abdur Rahman Crescent Institute of Science and Technology | India

Dr. Sivagaami Sundari Gunasekaran is an accomplished researcher and academic specializing in electrochemistry, nanomaterials, and advanced energy storage technologies. Currently serving as an Assistant Professor (Research) at B.S. Abdur Rahman Crescent Institute of Science and Technology, Chennai, she has made significant contributions to the development of novel electrodes, supercapacitors, lithium-ion batteries, and hybrid energy devices. With extensive experience across academia, research institutes, and industry, she has collaborated with leading organizations in India and abroad, including the Indian Institute of Technology Hyderabad and Kyung Hee University, South Korea. Dr. Gunasekaran’s research spans material synthesis, electrode design, electrochemical energy conversion, and flexible energy storage technologies for next-generation applications. She has authored numerous publications in high-impact international journals, holds patents on advanced electrode materials, and has played a key role in sponsored research projects. Recognized with prestigious awards for research excellence, she continues to drive innovation in sustainable energy materials.

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Education

Dr. Sivagaami Sundari Gunasekaran pursued her academic career with a strong foundation in chemistry and electrochemistry. She completed her Bachelor of Science in Chemistry (Specialization in Cheminformatics) at Madurai Kamaraj University, followed by a Master of Science in Chemistry (Electrochemistry) from Thiruvalluvar University, Vellore. Her academic journey culminated with a Ph.D. in Chemistry (Electrochemistry) from Vels Institute of Science, Technology and Advanced Studies (VISTAS), Chennai, Her doctoral research focused on the synthesis of nanostructured carbon and electrode materials for electrochemical energy storage devices, integrating principles of nanotechnology, electrochemistry, and sustainable materials. Throughout her education, she gained expertise in advanced synthesis techniques, electrochemical testing, and device fabrication, laying a strong foundation for her later contributions to batteries, supercapacitors, and hybrid systems. Her academic training reflects a balance of theoretical understanding and hands-on laboratory expertise in materials science and electrochemical energy research.

Experience

Dr. Gunasekaran has over a decade of multidisciplinary experience in research, teaching, and industry, particularly in energy storage materials and devices. She began her career as a Research Associate at Alagappa University, working on advanced electrodes for energy storage systems, followed by positions at IIT Hyderabad focusing on electrodes for supercapacitors and flexible devices. She later worked as Quality and Technical Support Executive at Dupont/Celanese Corporations, where she gained expertise in quality assurance, testing, and industrial standards. Returning to academia, she advanced as Research Associate and then Assistant Professor (Research) at B.S. Abdur Rahman Crescent Institute of Science and Technology, contributing to Li/Na-ion batteries, supercapacitors, and electrochemical sensors. She is also a Visiting Research Scientist at Kyung Hee University, South Korea, working on sustainable electrode materials. Her roles have combined project leadership, collaboration with industry, training students, and delivering impactful research in nanomaterials and electrochemical energy systems.

Research Focus

Dr. Gunasekaran’s research is centered on advanced materials for sustainable electrochemical energy storage and conversion. Her work spans the design and development of electrode and electrolyte systems for lithium-ion batteries, sodium-ion batteries, supercapacitors, and hybrid energy devices. She specializes in nanostructured carbon materials, polymer nanocomposites, bio-derived materials, and redox-active electrolytes, focusing on their role in improving energy density, cycling stability, and safety. She is also engaged in the development of flexible and wearable energy storage technologies, aligning with the growing demand for portable electronics and electric vehicles. Her projects include industrial collaborations on graphene-based electrodes, bio-inspired nanomaterials, and hybrid solid-state batteries. She combines advanced synthesis techniques such as hydrothermal processing, electrodeposition, and chemical vapor deposition with state-of-the-art characterization and electrochemical testing. Her ultimate research vision is to create low-cost, scalable, and environmentally sustainable energy solutions, bridging fundamental science with real-world applications for clean and renewable technologies.

Awards and Honors

Dr. Sivagaami Sundari Gunasekaran has received multiple prestigious awards recognizing her outstanding contributions to research and innovation. she was honored with the Best Women Researcher Award by KSR College of Arts and Science for Women during the International Conference on Nanotechnology and Material Science The same year, she received the Best Researcher Award from the International Journal of Microbial Science and My Rays Publication Center, India. Her excellence in scientific contributions was further acknowledged through the Research Excellence Award from the Social Development Federation, Uttar Pradesh. These distinctions reflect her leadership in advancing electrochemical energy storage technologies, her impactful publications in reputed journals, and her ability to bridge academic research with industrial applications. Alongside awards, her role as organizing secretary and invited speaker at international conferences underscores her recognition within the global scientific community, highlighting her as a rising leader in sustainable energy materials.

Publication Top Notes

High-performance solid-state supercapacitor based on sustainable synthesis of meso-macro porous carbon derived from hemp fibres via CO2 activation

Cited By: 76
Year: 2021
Single step, direct pyrolysis assisted synthesis of nitrogen-doped porous carbon nanosheets derived from bamboo wood for high energy density asymmetric supercapacitor
Cited By : 75
Year: 2021

Partially graphitic nanoporous activated carbon prepared from biomass for supercapacitor application

Cited By : 65
Year: 2018

Phytogenic generation of NiO nanoparticles as green-electrode material for high performance asymmetric supercapacitor applications

Cited By 61
Year: 2021

Conclusion

Dr. Sivagaami Sundari Gunasekaran’s impressive research experience, publication record, and patents make her a strong candidate for the Best Researcher Award. Her awards and recognition further demonstrate her capabilities. With some additional interdisciplinary collaboration, global impact, and research funding, she could further solidify her position as a leading researcher in her field.

Monica Alvarez Manso | Energy | Best Researcher Award

Ms. Monica Alvarez Manso | Energy | Best Researcher Award

University Of Leon | Spain

Ms. Monica Alvarez Manso is a dynamic researcher and professional in the field of energy and sustainability, with significant expertise in hydrogen technologies, bioenergy, and advanced energy systems. Currently pursuing her PhD at the University of León, she combines academic research with leadership in large-scale industrial and technological projects. Serving as Vice-Dean of the Official College of Technical Mining Engineers and Mining and Energy Graduates, she is actively engaged in innovation and sustainable development. Her career reflects a strong integration of scientific knowledge, engineering practice, and international project management in renewable energy and environmental protection.

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Education

Ms. Monica Alvarez Manso holds a strong academic foundation that bridges technical expertise with environmental sustainability. She earned her degree as a Technical Mining Engineer from the School of Technical Mining Engineering at León, further strengthening her engineering knowledge. She completed a Master’s in Occupational Risk Prevention from UNED, which broadened her scope in industrial safety and operational management. Currently, she is a PhD candidate at the University of León, focusing her doctoral research on energy engineering and hydrogen technologies. Her academic journey combines technical mining sciences, environmental protection, and renewable energy, preparing her to lead impactful research and innovation.

Experience

Ms. Monica Alvarez Manso has an extensive professional background leading technological and infrastructure projects in renewable energy, water management, and industrial sustainability. She has directed and coordinated projects in green hydrogen and bioenergy, managing the full cycle from design to implementation of hydrogen plants and biomethane upgrading systems. Her international project portfolio includes work in Chile, Angola, Poland, and the Netherlands, addressing large-scale power plants, substations, solar systems, and sustainable water solutions. She has also implemented CO2 reduction measures for industries like Airbus. In her institutional role, she contributes leadership as Vice-Dean, shaping policies and innovation in the mining and energy sectors.

Research Focus

Her research interests span across green hydrogen technologies, bioenergy, advanced energy systems, and sustainable resource management. She focuses on electrolysis processes, hydrogen storage, and transport innovations within the Power-to-Gas framework. In bioenergy, she explores biogas production, biomethane upgrading, and digestate valorization aligned with circular economy strategies. She also investigates smart grids, energy storage systems, and industrial energy efficiency measures. Her work extends to renewable integration of solar, biogas, and hydrogen into industrial and electrical systems. Moreover, she explores climate change mitigation by developing methods for CO2 emission reduction, contributing to sustainable energy transitions and resilient infrastructure.

Awards and Honors

Throughout her career, Ms. Monica Alvarez Manso has been recognized for her contributions to technological innovation and energy sustainability. She has registered intellectual property, including the Hydrogreensim simulator for hydrogen plant water purification systems and the Virtual Art Projection invention, highlighting her capacity to bridge creativity with applied engineering. Her leadership as Vice-Dean at the Official College of Technical Mining Engineers and Mining and Energy Graduates reflects her recognition in academic and professional communities. Additionally, her involvement in high-impact European programs such as Horizon, Life, and Prima demonstrates her excellence in securing and managing competitive research projects.

Publication Top Notes

Title: Classification Framework for Hydrological Resources for Sustainable Hydrogen Production with a Predictive Algorithm for Optimization
Year: 2025

Title: Feasibility study of a combined electric power plant with a thermolysis process
Year: 2002

Conclusion

Mónica Alvarez Manso’s impressive background in energy engineering, leadership roles, and innovative contributions make her a strong candidate for the Best Researcher Award. With further emphasis on publications and interdisciplinary collaboration, she could become an even more prominent figure in her field. Her research achievements and potential for future impact make her a promising contender for this award ¹.

Mr. Manuel Ángel González Rodríguez | Electroquímica | Best Researcher Award

Mr. Manuel Ángel González Rodríguez | Electroquímica | Best Researcher Award

 

Investigador at CITES, Spain.

Manuel Ángel González Rodríguez is a highly skilled and accomplished researcher in the field of chemical engineering and sustainability 🌱. With a strong academic background and extensive research experience, he has demonstrated expertise in various areas, including project management, analytical chemistry, and hydrogen production ⚗️.

Professional Profile

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🎓 Education

– *Grado en Química*: Universidad de Huelva (UHU) (09/2019) – (06/2023) 🎓 – Nota media: 8.9/10 (NT) – Trabajo de Fin de Grado: Extracción de Cr(VI) en material particulado atmosférico y determinación mediante ICP-MS (9.9/10)- *Máster Oficial en Ingeniería Química*: Universidad de Huelva (UHU) (10/2023) – (02/2025) 🎓 – Nota media: 9.3/10 (SB) – Trabajo de Fin de Máster: Estudio del proceso de modificación química de aceites vegetales con azufre utilizando diferentes rutas de síntesis (9.4/10)- *Programa de Doctorado en Ciencia y Tecnología Industrial y Ambiental*: Universidad de Huelva (UHU) 📚

💼 Experience

– *Prácticas curriculares*: EUROFINS QUÍMICO ONUBENSE S.L.U. (02/2023) – (04/2023) 💼– *Proyecto de colaboración Santander*: Universidad de Huelva (06/2023) – (08/2023) 💼– *Prácticas curriculares*: UHU Centro de Investigación en Tecnología, Energía y Sostenibilidad (10/2024) – (12/2024) 💼– *Contrato como Titulado de Grado Superior*: Dovetail Electric Aviation, S.L.U. (05/2024) – (04/2025) 💼– *Personal Investigador Predoctoral en Formación*: Universidad de Huelva (05/2025) – (actual) 📚

🔬 Research Interests

Manuel Ángel González Rodríguez’s research focuses on sustainability, chemical engineering, and hydrogen production 🌟. His work involves designing and optimizing electrolytic cells for hydrogen production from renewable sources.

 

📚Top Noted  Publications

 

– Extracción de Cr(VI) en material particulado atmosférico y determinación mediante ICP-MS 📄
– Estudio del proceso de modificación química de aceites vegetales con azufre utilizando diferentes rutas de síntesis 📄
– Contribuciones a la optimización del diseño de celdas electrolíticas de tipo AEM para la producción de hidrógeno a partir de fuentes renovables 📄
– Diseño e integración del sistema de pila de hidrógeno en banco de pruebas para plataforma aérea

Conclusion

Manuel Ángel González Rodríguez’s research experience, academic excellence, and project management skills make him a strong candidate for the Best Researcher Award. With some further emphasis on international collaboration and publication in top-tier journals, Manuel Ángel could further solidify his position as a leading researcher in his field.

Prof. Sunday Olayinka Oyedepo | Energy Systems | Best Researcher Award

Prof. Sunday Olayinka Oyedepo | Energy Systems | Best Researcher Award

Professor at Bells University of Technology, Nigeria.

Professor Sunday Olayinka Oyedepo is a renowned expert in Mechanical and Biomedical Engineering, with over 24 years of research and teaching experience 📚. He is currently a Full Professor at Bells University of Technology, Ota, Nigeria 🎓. Professor Oyedepo has published over 200 papers in national and international journals, book chapters, and conferences 📄. His research work has been widely cited, with 4958 citations, an H-index of 34, and an i10-index of 84 📊.

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🎓 Education

– Ph.D. in Mechanical Engineering: Covenant University, Nigeria 🎓– M.Eng in Mechanical Engineering: University of Ibadan, Nigeria 🎓– B.Eng in Mechanical Engineering: University of Ilorin, Nigeria

💼 Experience

– *Full Professor*: Bells University of Technology, Ota, Nigeria (Current) 🎓– *Research and Teaching Experience*: Over 24 years of experience in research and teaching at University and Polytechnic levels 📚– *Supervision*: Successfully supervised 3 Ph.D. students, 4 M.Eng students, and over 50 undergraduate projects

🔬 Research Interests

– *Energy Systems*: Design and optimization of thermal energy systems, including gas turbine and steam turbine power plants .- *Environmental Science*: Research on environmental science and engineering, including environmental noise and sustainable development

🏆 Awards

– *Highly Cited Researcher*: With 4958 citations, an H-index of 34, and an i10-index of 84, Professor Oyedepo is a highly cited researcher in his field 📊.- *Editorial Board Member*: Served as Associate Editor, Article Editor, and Editorial Board Member for various international journals

📚 Top Noted Publications

– “Recent Development in Energy Conversion Systems”: Frontiers in Energy Research 📄
– “Recent Advances in Energy Systems for Sustainable Development”: Frontiers in Energy Research 📄
– “Thermal Energy System Design and Optimization”: Various journals, including Renewable and Sustainable Energy Reviews and Energy Conversion and Management 📄.

Conclusion

Professor Sunday Olayinka Oyedepo’s impressive research experience, strong publication record, and editorial experience make him a strong candidate for the Best Researcher Award. With some further emphasis on interdisciplinary collaboration and patent development, Professor Oyedepo could further solidify his position as a leading researcher in his field.

Dr. Essam Hussain | Power Electronics | Best Researcher Award

Dr. Essam Hussain | Power Electronics | Best Researcher Award

Power Electronics Reseach Lead at Tae Power Solutions,  United Kingdom.

Dr. Essam Hussain is a highly skilled and experienced power electronics engineer with a strong background in research and development. He has a Ph.D. in Electronic and Electrical Engineering from the University of Sheffield, UK, and has worked on various projects related to power electronics, renewable energy, and energy storage.

Professional Profile

ORCID

🎓 Education

.– Ph.D. in Electronic and Electrical Engineering: University of Sheffield, UK (2013) – Thesis: “Converter Topologies of Single Phase Parallel Voltage Source Inverters Fed from Renewable Energy Sources”- (link unavailable) in Electrical Engineering: Assiut University, Egypt (2003) – Thesis: “Performance of Reluctance Motors Fed from Variable Frequency Supplies”- (link unavailable) in Electrical Engineering: Assiut University, Egypt (1998)

💼 Experience

– *Principal Power Electronics Engineer*: TAE Power Solution, Birmingham, UK (2023-present) – Research lead and development of new products and features – Collaboration with internal and external engineering teams- *Senior Power Electronics Design Engineer*: Zhuzhou CRRC Times Electric UK Innovation Center, Birmingham, UK (2020-2023) – Research on multilevel converters and design optimization – Development of SiC-based power converters- *Business Research Fellow*: University of Exeter, UK (2018-2020) – Research on microgrids and power electronics converters – Design and optimization of medium-voltage high-frequency converters- *Research Associate*: University of Sheffield, UK (2013-2017) – Research on microgrids, energy storage, and machine drives – Development of fault-tolerant PM drive and control

🔬 Research Interests

– *Power Electronics*: Design and development of power converters, including multilevel converters and solid-state transformers- *Renewable Energy*: Research on renewable energy sources, including solar and wind power- *Energy Storage*: Investigation of energy storage systems, including flywheels and batteries- *Machine Drives*: Design and development of machine drives, including PM machine and reluctance machine

🏆 Awards

– *Fully Funded PhD study*: Egyptian Ministry of Higher Education- *Research grants*: Various research grants from UK-based organizations

📚 Top Noted Publications

– “Cascaded H-Bridge Multilevel Converter Topology for a PV Connected to a Medium-Voltage Grid”: Machines, 2025
– “Design Optimisation of a Current-Fed Solid-State Transformer for MV Grid-Connected Applications”: Energies, 2021
– “Grid Island Energy Transition Scenarios Assessment Through Network Reliability and Power Flow Analysis”: Frontiers in Energy Research, 2021
– “Power Losses Calculation for Medium Voltage DC/DC Current-Fed Solid State Transformer for Battery Grid-Connected”: EPE’20 ECCE Europe, 2020 [2][1].

 

Conclusion

Dr. Essam Hussain’s impressive research experience, strong publication record, and teaching background make him a strong candidate for the Best Researcher Award. With some further emphasis on interdisciplinary collaboration and patent commercialization, Dr. Hussain could further solidify his position as a leading researcher in power electronics.

Dr. Banji Rildwan Olaleye| Green Management Practices | Best Researcher Award

Dr. Banji Rildwan Olaleye| Green Management Practices | Best Researcher Award

Postdoctoral Researcher at North West University, South Africa

Dr. Banji Rildwan Olaleye is a distinguished academic and researcher serving as a Postdoctoral Research Fellow at North-West University Business School in Potchefstroom, South Africa, and Senior Lecturer in the Department of Business Administration at Federal University Oye-Ekiti, Nigeria. With over 11 years of experience in academia and administration, Dr. Olaleye has developed sound managerial and relational skills. His research focuses on strategic and innovation management, entrepreneurship, supply chain management, and sustainable development ¹.

Professional Profile

scholar

🎓 Education

Dr. Olaleye’s academic journey includes:- *PhD in Business Management*, Girne American University, Turkey (2022), with a thesis on “Strategic Thinking and Innovation Performance: Mediating Role of Absorptive Capability”.- *MSc in Business Administration*, Obafemi Awolowo University, Nigeria (2017), with a dissertation on “Inventory Management and Performance in Agro-allied Industry in Southwestern Nigeria”.- *BSc in Cooperative and Business Management*, Olabisi Onabanjo University, Nigeria (2010), with a dissertation on “Effect of Social Capital on Poverty Reduction among Rural Farming Households in Egba Division of Ogun State, Nigeria”.- *Diploma in Business Administration*, Olabisi Onabanjo University, Nigeria (2007).

💼 Professional Experience

Dr. Olaleye’s professional experience includes:- *Postdoctoral Research Fellow*, North-West University Business School, South Africa (April 2024 – present).- *Lecturer I*, Federal University Oye-Ekiti, Nigeria (2023 – present).- *Lecturer II*, Federal University Oye-Ekiti, Nigeria (2021 – 2023).- *Assistant Lecturer*, Federal University Oye-Ekiti, Nigeria (2018 – 2021).- *Administrative Officer II*, Federal University Oye-Ekiti, Nigeria (2013 – 2018).

🏆 Honors & Awards

Dr. Olaleye has received recognition for his contributions to academia and research, including:- *Appointment as Deputy Director for Student Affairs Division*, Federal University Oye-Ekiti (2023).- *Role in Curriculum Development and Accreditation*, Department of Business Administration, Federal University Oye-Ekiti.

🔍Research Focus

Dr. Olaleye’s research interests include:- *Strategic and Innovation Management*: Exploring strategic thinking and innovation performance.- *Entrepreneurship*: Investigating entrepreneurial orientation and competitive intelligence.- *Supply Chain Management*: Analyzing sustainable supply chain performance and green innovation.- *Sustainable Development*: Focusing on sustainable development goals, including quality education, decent work, and economic growth ¹ ².

📚Top Noted Publications

1. “Greening Sustainable Supply Chain Performance: The Moderating and Mediating Influence of Green Value CoCreation and Green Innovation” (2025) 📦
2. “Reconciling the nexus between fiscal decentralization and environmental sustainability in European Union: Moderating role of environmental policy stringency” (2025) 🌎
3. “Environmental Sustainability Awareness and Knowledge Among Millennial and Gen Z Students: A Study from a Public Higher Education Institution” (2025) 📚
4. “Brand Extension Strategies and Customer Loyalty: Empirical Evidence From Fast-Moving Consumer Goods Companies” (2025) 📈
5. “Going Green: Effect of Dynamic Capability, Innovation, and Supply Chain Agility in Fostering Supply Chain Management in SDGs Context” (2025) 🌟
6. “Integrating Sustainable Behavior into Construction Risk Management: Modeling Human-Related Factors and Attitude” (2024) 🏗️
7. “Exploring Competitive Intelligence Effectiveness on SMEs Performance: The Meditating Influence of Entrepreneurial Orientation” (2024) 📊
8. “Examining Structural Relationships Between Innovation Capability, Knowledge Sharing, Environmental Turbulence, and Organisational Sustainability” (2024) 🤝
9. “Leveraging innovation capability and organizational resilience for business sustainability among small and medium enterprises: A PLS-SEM approach” (2024) 📈
10. “Exploring the Link Between Customer Satisfaction, Service Quality, and Perceived Organizational Support: The Mediating Role of Relational Psychological Contract” (2024) 📝
11. “Relationship between workplace ostracism and job productivity: the mediating effect of emotional exhaustion and lack of motivation” (2024) 💼
12. “Attaining Organizational Sustainability Through Competitive Intelligence: The Roles of Organizational Learning and Resilience” (2023) 📚
13. “Influence of eco-product innovation and firm reputation on corporate social responsibility and competitive advantage: A mediation-moderation analysis” (2023) 🌟

Conclusion

Dr. Olaleye’s impressive research record, diverse research interests, and significant contributions to business management literature make him a strong contender for the Best Researcher Award. Addressing areas for improvement could further enhance his profile and impact. With his extensive experience and expertise, Dr. Olaleye has the potential to make even more significant contributions to the field ¹ ².