Danilo Paduano | Bio Materials | Innovative Research Award

Innovative Research Award

Danilo Paduano — HUMANITAS MATER DOMINI

Danilo Paduano
Affiliation HUMANITAS MATER DOMINI
Country Italy
Scopus ID 57210364806
Documents 43
Citations 827
h-index 14
Subject Area Bio Materials
Event Global Mechanics Awards
ORCID 0000-0003-2732-0840

DANILO PADUANO is a researcher affiliated with HUMANITAS MATER DOMINI in Italy whose indexed scholarly record includes 43 documents, 827 citations, and an h-index of 14 according to the supplied Scopus profile information. His identified subject area is Bio Materials, a multidisciplinary field concerned with the design, characterization, performance, and application of materials intended for interaction with biological systems. The research profile therefore provides a relevant academic basis for consideration within an innovation-oriented recognition framework, particularly where materials science and mechanics intersect.

The Innovative Research Award recognizes research that demonstrates meaningful advancement of knowledge, methodological development, or practical contribution within an appropriate scientific or engineering domain. Assessment should be based on verifiable scholarly evidence, research quality, originality, relevance, and documented impact rather than solely on bibliometric indicators.

Abstract

This article presents an academic recognition profile for Danilo Paduano of HUMANITAS MATER DOMINI, Italy, in relation to the Innovative Research Award. The supplied bibliometric information identifies 43 Scopus-indexed documents, 827 citations, and an h-index of 14. His stated subject area, Bio Materials, represents an interdisciplinary research domain with potential connections to material behavior, structural performance, biological compatibility, and engineering applications. The available information supports consideration of the researcher for an innovation-focused award, while detailed assessment of individual publications, methodologies, and original contributions should be undertaken using primary scholarly records and the complete research portfolio.

Keywords

Keywords: Innovative Research Award, Danilo Paduano, Bio Materials, biomaterials research, materials science, biomedical materials, research innovation, engineering mechanics, academic research, Global Mechanics Awards.

Introduction

Bio Materials research occupies an interdisciplinary position between materials science, engineering, biology, medicine, and applied research. Depending on the research question, biomaterials may be evaluated through mechanical, chemical, physical, biological, or functional criteria. Such interdisciplinary work can be particularly relevant to innovation awards when it demonstrates a clear connection between scientific investigation and improved material performance or application.

The supplied Scopus information provides a quantitative overview of Danilo Paduano’s indexed scholarly activity. Bibliometric measures such as document count, citation count, and h-index can provide useful indicators of research visibility, but they do not independently establish the novelty or quality of individual contributions. Accordingly, award evaluation should consider bibliometric information together with publication quality, research methodology, originality, reproducibility, and demonstrated scientific or technological relevance.

Research Profile

The supplied profile identifies Danilo Paduano with HUMANITAS MATER DOMINI in Italy and associates his indexed research with Bio Materials. The available bibliometric record consists of 43 documents and 827 citations, with an h-index of 14. These figures indicate an established indexed publication record and measurable citation activity within the scholarly literature, subject to verification against the current Scopus author record.

From an academic perspective, biomaterials research may encompass the development and evaluation of materials designed for medical, biological, or biomedical environments. Mechanical considerations can include stiffness, strength, elasticity, fatigue behavior, deformation, wear, fracture resistance, and the interaction between material structure and functional performance. These intersections provide a scientifically relevant pathway for assessing biomaterials research within a broader mechanics-oriented recognition context.

Research Contributions

The supplied information establishes the researcher’s activity within the Bio Materials subject area but does not provide a complete list of individual research contributions. Consequently, specific scientific claims should be attributed only after verification of the underlying publications. Within the context of an academic recognition assessment, relevant contributions may include original biomaterial development, experimental characterization, mechanical evaluation, translational research, computational modeling, or interdisciplinary approaches that address defined scientific or engineering problems.

Where biomaterials research involves mechanical characterization, the study of material behavior can provide evidence relevant to mechanics-oriented applications. Parameters such as elastic response, strength, deformation, fatigue, fracture, and structural integrity may be important depending on the intended use of the material. Peer-reviewed evidence demonstrating methodological rigor and reproducibility would strengthen the assessment of such contributions.

Publications

The supplied profile reports 43 Scopus-indexed documents. The available input does not include individual publication titles, journals, publication years, author positions, or DOI identifiers. Therefore, this article does not attribute specific publications or findings to Danilo Paduano beyond the supplied bibliometric information. A complete publication assessment should be conducted using the researcher’s verified Scopus record and primary publisher records.

For award evaluation, particular attention may be given to peer-reviewed publications that demonstrate originality, methodological quality, interdisciplinary relevance, and a clear contribution to biomaterials science or related engineering fields. DOI information should be added to individual publication records when verified from authoritative publisher or indexing sources.

Research Impact

The supplied citation count of 827 and h-index of 14 provide quantitative indicators of the visibility and citation reach of the indexed research record. Such measures can assist an award committee in understanding scholarly influence, but citation-based indicators should be interpreted in relation to field, publication age, collaboration patterns, and the characteristics of the relevant research community.

Research impact may also be demonstrated through factors beyond citations, including adoption of methods, technological development, interdisciplinary collaboration, clinical or industrial relevance, educational influence, and contribution to subsequent research. These dimensions should be evaluated from verifiable evidence rather than inferred solely from bibliometric statistics.

Award Suitability

Danilo Paduano appears suitable for consideration for the Innovative Research Award within the Global Mechanics Awards framework, based on the supplied academic profile, established indexed publication record, citation activity, h-index, and stated specialization in Bio Materials. The subject area can have meaningful connections to mechanics through the study and engineering of material properties, structural behavior, deformation, durability, and functional performance.

This suitability assessment should be understood as an academic screening assessment rather than a final award decision. Final recognition should depend on the official eligibility requirements, verified research records, originality of the nominated work, quality of supporting publications, and the evaluation criteria applied by the award committee. The supplied Scopus metrics provide supporting evidence but should not be treated as the sole basis for selection.

Conclusion

Danilo Paduano of HUMANITAS MATER DOMINI, Italy, has a supplied Scopus profile comprising 43 documents, 827 citations, and an h-index of 14, with Bio Materials identified as the relevant subject area. These indicators establish a substantive scholarly profile for consideration in an innovation-focused academic recognition process. The interdisciplinary character of biomaterials research also provides a potential connection to mechanics through material characterization and performance-related investigations.

On the basis of the information provided, the researcher is suitable for consideration for the Innovative Research Award associated with the Global Mechanics Awards. Final eligibility and award selection should remain subject to independent verification of the research record and the formal criteria established by the awarding organization.

References

  1. Elsevier. (n.d.). Scopus author details: Danilo Paduano, Author ID 57210364806. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57210364806
  2. ORCID. (n.d.). ORCID record: Danilo Paduano, ORCID iD 0000-0003-2732-0840. ORCID.
    https://orcid.org/0000-0003-2732-0840
  3. Global Mechanics Awards. (n.d.). Global Mechanics Awards — Official Website.
    https://globalmechanicsawards.com/
  4. Ratner, B. D., Hoffman, A. S., Schoen, F. J., & Lemons, J. E. (Eds.). (2013). Biomaterials Science: An Introduction to Materials in Medicine (3rd ed.). Academic Press.
  5. Williams, D. F. (2009). On the mechanisms of biocompatibility. Biomaterials, 29(20), 2941–2953.
    https://doi.org/10.1016/j.biomaterials.2008.04.023

Ni Jiang | Bio materials | Best Researcher Award

Assoc. Prof. Dr. Ni Jiang | Bio materials | Best Researcher Award 

Associate professor, at Beijing University of Chemical Technology, China.

Ni Jiang is an Associate Professor at Beijing University of Chemical Technology, specializing in biodegradable polymers and nylon composites. With a strong academic background, she has contributed extensively to polymer research, focusing on structure regulation and high-performance applications. Her work spans hemostatic materials, antibacterial polymers, and tissue engineering scaffolds. She has received prestigious awards, including recognition as an excellent class teacher and thesis advisor. Ni Jiang has led multiple national and enterprise-funded research projects, reinforcing her expertise in material science. Her commitment to advancing sustainable polymers has earned her a distinguished reputation in academia and industry.

Professional Profile

Education 🎓

Ni Jiang’s academic journey began at Jinan University, where she completed her undergraduate studies (2001-2005). She pursued her Ph.D. at the Institute of Chemistry, Chinese Academy of Sciences (2005-2010), where she specialized in polymer science. Her doctoral research laid the foundation for her later contributions to biodegradable materials and high-performance polymers. With a strong grounding in chemistry and materials science, she has developed innovative solutions for environmental sustainability and medical applications. Her education has equipped her with a deep understanding of polymer structures, leading to breakthroughs in biodegradable polymer composites and their industrial applications.

Work Experience 💼

Ni Jiang has held various prestigious positions throughout her career. She began as an Assistant Researcher at the Institute of Chemistry, CAS (2010-2012), followed by a postdoctoral fellowship at RIKEN (2012-2015). She then joined Beijing University of Chemical Technology as a Lecturer (2016-2020) and was promoted to Associate Professor in 2021. Over the years, she has played a pivotal role in advancing polymer research, mentoring students, and collaborating with industries to develop high-performance biodegradable materials. Her extensive experience across research institutions and universities underscores her dedication to scientific innovation and education.

Research Interests 🔬

Ni Jiang’s research focuses on biodegradable polymers and nylon composites, with an emphasis on structure regulation and high-performance applications. Her work includes developing polymers for hemostatic materials, antibacterial solutions, and tissue engineering scaffolds. She also explores ways to enhance polymer performance by reducing water absorption and increasing mechanical strength. By combining fundamental research with practical applications, she aims to improve sustainability in materials science and expand the use of biodegradable polymers in medical and environmental fields. Her innovative approaches continue to push the boundaries of polymer technology.

Awards and Honors 🏅

  • 2023: Beijing University Graduation Thesis Excellent Instructor
  • 2020-2021: Excellent Class Teacher
    Her dedication to academic excellence and student mentorship has been recognized through these prestigious awards. These honors highlight her commitment to guiding students in research and fostering innovation in polymer science.

Research Projects 🔍

  • 2023: Enterprise Cooperation Project (Host)
  • 2021: Enterprise Cooperation Project (Host)
  • 2020: General Program of National Natural Science Foundation of China (Host)
  • 2018: General Program of National Natural Science Foundation of Beijing (Host)
  • 2016: Foundation for University Key Teacher by the Ministry of Education of China (Host)
  • 2011: National Natural Science Foundation of China Youth Fund (Host)
    Her successful leadership in these projects has contributed significantly to advancements in biodegradable polymer research and industrial applications.

Top Noted Publications 📚

  • “Reactive Toughening of Poly(Glycolic Acid)/Poly(ε‐Caprolactone) Blends Using Environmentally Friendly and Cost‐Effective Bio‐Based Chain Extenders”
    Authors: Wu, H.; Duan, M.Z.; Ning, Z.B.; Gan, H.Y.; Jiang, N.
    Published in: Journal of Applied Polymer Science, 2025
    This study explores the enhancement of poly(glycolic acid) (PGA) and poly(ε-caprolactone) (PCL) blends’ toughness through reactive compatibilization using bio-based chain extenders. The approach aims to improve the mechanical properties and hydrolytic stability of the blends while maintaining environmental sustainability and cost-effectiveness.

  • “Preparation of Thiolated Poly(Lactic Acid) Microspheres by Amine Ester Reaction to Simulate Three-Dimensional Inkjet Printing (3DP) Biocompatible Scaffolds”
    Authors: Ma, H.T.; Wang, Y.L.; Qu, G.H.; Guo, X.M.; Jiang, N.; Zhao, L.F.
    Published in: Chemical Engineering Journal, 2024
    This research presents a method for fabricating thiolated poly(lactic acid) (PLA) microspheres through an amine-ester reaction between cysteine and PLA in an aqueous environment. The resulting microspheres are designed to mimic the properties required for three-dimensional inkjet printing of biocompatible scaffolds, offering potential applications in tissue engineering.

  • “Rare Lamellar Assembly Mechanism on Special Spherulites of Poly(ε-Caprolactone)-b-Polyamide 6-b-Poly(ε-Caprolactone)”
    Authors: Dou, Y.Y.; Wu, H.; Zhang, L.; Ning, Z.B.; Jiang, N.; Gan, Z.H.
    Published in: Macromolecules, 2023
    This study investigates the formation conditions, internal factors, and lamellar orientation of unique spherulites in poly(ε-caprolactone)-b-polyamide 6-b-poly(ε-caprolactone) triblock copolymers. The research provides insights into the lamellar assembly mechanisms that lead to the development of these special spherulitic structures.

  • “Facile Method for the Synthesis of PCL-b-PA6-b-PCL Using Amino-Terminated PA6 as a Macroinitiator and Its Characterization”
    Authors: Dou, Y.Y.; Tian, N.; Ning, Z.B.; Jiang, N.; Gan, Z.H.
    Published in: Macromolecules, 2022
    This paper describes a straightforward synthesis method for creating poly(ε-caprolactone)-b-polyamide 6-b-poly(ε-caprolactone) (PCL-b-PA6-b-PCL) triblock copolymers. By employing amino-terminated PA6 as a macroinitiator, the study achieves well-defined copolymers and provides a comprehensive characterization of their properties.

  • “Ultra-Toughened Poly(Glycolic Acid)-Based Blends with Controllable Hydrolysis Behavior Fabricated via Reactive Compatibilization”
    Authors: Wu, H.; Wang, C.Y.; Ning, Z.B.; Jiang, N.; Gan, Z.H.
    Published in: European Polymer Journal, 2022
    This research focuses on developing ultra-toughened poly(glycolic acid) (PGA)-based blends with adjustable hydrolysis rates. Through reactive compatibilization, the study enhances the miscibility and mechanical properties of PGA when blended with poly(ε-caprolactone) (PCL), resulting in materials with tailored degradation profiles suitable for biomedical applications.

Conclusion

Ni Jiang is a strong candidate for the Best Researcher Award, given the depth of research, impactful publications, and contributions to polymer science. Enhancing international collaborations and increasing research awards could further solidify her candidacy.

Ms Mahnaz Mohammadi | Elasticity

Ms Mahnaz Mohammad: Leading Researcher in Elasticity

Congradulations, Ms Mahnaz Mohammadi, on winning the esteemed  Best Scholar award  Sciencefather!

Ms Mahnaz Mohammad, Islamic Azad University, Tehran, IR Phd  (Department of Mathematics )

Congratulations, Ms Mahnaz Mohammadi  In recognition of your outstanding contributions to the field of Elasticity, we extend our heartfelt congratulations on receiving the prestigious  Best Scholar Award. by ScienceFather Your dedication to advancing knowledge in clinical Elasticity, and the exploration of Elasticity is truly commendable.Your commitment to excellence and tireless efforts in research have not only enriched our academic community but have also contributed significantly to the broader scientific community.

May this award serve as a testament to your exceptional skills, unwavering dedication, and the impactful influence you’ve had on your field.  We look forward to witnessing your continued success and the many more groundbreaking contributions to come.Once again, congratulations on this well-deserved achievement!

 

Professional Profiles:

 

 

Education:

 

Islamic Azad University, Tehran: Tehran, IR  (Department of Mathematics )

2001 to 2006 | PhD (Faculty of Chemistry)   Nicolaus Copernicus University: Toruń, PL

 

Research projects:

2023-06-06 | journal-article | Numerical Solutions of Duffing Van der Pol Equations on the Basis of Hybrid FunctionsAdvances in Mathematical Physics

Dr olgaI mpert | Bio materials

Dr olgaI mpert: Leading Researcher in  Bio materials

Congradulations, Dr olgaI mpert, on winning the esteemed  Paper Women Research award  Sciencefather!

Dr olgaI mpert, Nicolaus Copernicus University,Toruń, PL

Congratulations, Dr olgaI mpert In recognition of your outstanding contributions to the field of Bio materials, we extend our heartfelt congratulations on receiving the prestigious  Women Researcher Award. by ScienceFather Your dedication to advancing knowledge in clinical Bio materials, and the exploration of Bio materials is truly commendable.Your commitment to excellence and tireless efforts in research have not only enriched our academic community but have also contributed significantly to the broader scientific community.

May this award serve as a testament to your exceptional skills, unwavering dedication, and the impactful influence you’ve had on your field.  We look forward to witnessing your continued success and the many more groundbreaking contributions to come.Once again, congratulations on this well-deserved achievement!

 

Professional Profiles:

 

 

Education:

 

1996 to 2001 | Msc (Faculty of Chemistry)    Nicolaus Copernicus University

2001 to 2006 | PhD (Faculty of Chemistry)   Nicolaus Copernicus University: Toruń, PL

 

Research projects:

 

  • Contemporary:
    Redox modulation of oxidative/reductive stress with transition metal complexes.
    Ru(edta) complexes catalysed nitrogen cycle reaction: kinetics and mechanistic studies.
    Mixed-valence ion pairs, 2019/03/X/ST4/01317 Kierownik Projektu: data rozpoczęcia 19-12-2019, data zakończenia 18-12-2020, zakończony zrealizowany
  • Previously:
    Ru(II) and Ru(III) complexes as potential anticancer drugs; synthesis, structural studies, and kinetics and mechanism of ligands substitution and redox processes; financially supported by NCU Grant;
  • Kinetics and mechanism of electron transfer processes in chromium(III) complexes with some tetraazamacrocyclic ligands; individually sponsored by Polish Committee for Science Research and Ministry of Education and Science (2005-2006); in cooperation with dr Ole Mønsted, University of Copenhagen, Denmark;
  • Kinetics and mechanism of redox processes of methylene blue; in cooperation with Prof. A. Mills, University of Strathclyde, Glasgow, UK
    Hydrogen peroxide as an ecological oxidant and reductant; kinetic studies; financially supported by NCU Grant.
  • Olga Impert, Anna Kozakiewicz-Piekarz, Anna Katafias, Rudi Van Eldik, Maciej Witwicki, Urszula K. Komarnicka, 64th Scientific Meeting of PTChem. Lublin, September 11-16, 2022; lecture
    Olga Impert, Marta Chrzanowska, Anna Katafias, Rudi van EldikThirdEuCheMS Inorganic Chemistry Conference: EICC-3 : Chemistry over the horizon, 28th June – 1st July 2015; presentations

 

Prizes and awards:

 

University Rector reward for Ph.D. thesis;

Team distinction of the Nicolaus Copernicus University Rector in Toruń for achievements in  the organizational field in 2020;

Four one-time scholarships for high-scoring scientific publications in 2020 and 2023;

 

Achievements:

Co-organizer of the 4th National Inorganic Chemistry Forum (member of the organizing committee), September 7-9, 2021.

Co-organizer of the 65th Congress of the Polish Chemical Society

Preparing and conducting lectures for high school students as part of workshops at the Faculty of Chemistry of Nicolaus Copernicus University.

 

Prof Vladimir Jurisic – Bio materials

Prof Vladimir Jurisic: Leading Researcher in  Bio materials

Congradulations, Prof Vladimir Jurisic, on winning the esteemed  Paper Excellence in Research  Sciencefather!

Prof Vladimir Jurisic, National and Kapodistrian University of Athens: Athens, Greece

Congratulations,Prof Vladimir Jurisici In recognition of your outstanding contributions to the field of Biochemistry and Environmental Health Science, we extend our heartfelt congratulations on receiving the prestigious Excellence in Research. by ScienceFather Your dedication to advancing knowledge in clinical Bio materials, and the exploration of Bio materials is truly commendable.Your commitment to excellence and tireless efforts in research have not only enriched our academic community but have also contributed significantly to the broader scientific community.

May this award serve as a testament to your exceptional skills, unwavering dedication, and the impactful influence you’ve had on your field.  We look forward to witnessing your continued success and the many more groundbreaking contributions to come.Once again, congratulations on this well-deserved achievement!

 

Professional Profiles:

 

 

Education:

 

Scuola Superiore diImmunologia Ruggero Ceppellini: Naples, Italy

National and Kapodistrian University of Athens: Athens, Greece

Publications Tops Notes:

 

Jurisic V, Obradovic J, Nikolic N, Javorac J, Perin B, Milasin J. Analyses of P16INK4a gene promoter methylation relative to molecular, demographic and clinical parameters characteristics in non-small cell lung cancer patients: A pilot study.Mol Biol Rep. 2022 Nov 15. doi: 10.1007/s11033-022-07982-1.

Jurisic V, Ledda C, Mucci N, Tafuri S, Vimercati L. Editorial: Occupational Medicine: Disease Risk Factors and Health Promotion. Front Public Health. 2022 Jan 25;9:819545. doi: 10.3389/fpubh.2021.819545. eCollection 2021.

Obradovic J, Todosijevic J, Jurisic V. Application of the conventional and novel methods in testing EGFR variants for NSCLC patients in the last 10 years through different regions: a systematic review. Mol Biol Rep. 2021 Apr;48(4):3593-3604. doi:

Jurišić V, Vuletić A, Mirjačić Martinović K, Konjević G. The Role of NK Cells in Cancer. In: Rezaei N (eds). Cancer Immunology, A Translational Medicine Context, Second edition, Springer International Publishing,133-146 (2020)

Jurisic V, Vukovic V, Obradovic J, Gulyaeva L, Kushlinskii N, Djordjević N. EGFR Polymorphism and Survival of NSCLC Patients Treated with TKIs: A Systematic Review and Meta-Analysis. Journal Oncology, 3 18, (2020)

Čolović N, Denčić-Fekete M, Peruničić M, Jurišić V. N Čolović, M Denčić-Fekete, M Peruničić, V Jurišić. Clinical Characteristics and Treatment Outcome of Hypocellular Acute Myeloid Leukemia Based on WHO Classification. Indian Journal of Hematology and Blood Transfusion 36 1 (2020)

Mirjačić Martinović K, Milićević M, Larsen AK, Džodić R, Jurišić V, Konjević G, Vuletić A. Effect of cytokines on NK cell activity and activating receptor expression in high-risk cutaneous melanoma patients. Eur Cytokine Netw 1;30(4):160-167 (2019).

Dzopalić T, Božić-Nedeljković B, Jurišić V. Function of innate lymphoid cells in the immune-related disorders. Human Cell, 7, 5 (2019)

Konjević, G.M., Vuletić, A.M., Mirjačić Martinović, K.M., Larsen, A.K., Jurišić, V.B. The role of cytokines in the regulation of NK cells in the tumor environment. Cytokine 117, 30-40 (2019)

Radenkovic S, Konjevic G, Gavrilovic D, Stojanovic-Rundic S, Plesinac-Karapandzic V, Stevanovic P, Jurisic V. pSTAT3 expression associated with survival and mammographic density of breast cancer patients. Pathol Res Pract. 215(2) 366-372 (2019)

 

Editorial board in journals:

 

  • Frontiers in Immunology, Frontiers in Oncology, International journal Dermatology, Open Medicine, Medical Science Monitor, Journal of Infectious Diseases and Immunity, Journal of Hematological Malignancies

 

Supervision & Publications:
  • Citations: 397
  • Documents: 32
  • h-index: 9

 

Mr JIBRIL SANI MOHAMMED- Bio materials

Mr Jibrilsani Mohammed : Leading Researcher in  Bio materials

Congradulations, Mr. Jibrilsani Mohammed, on winning the esteemed Best Paper Award from Sciencefather!

Heartfelt congratulations on receiving [Best Paper Award]! This well-deserved recognition is a testament to your exceptional talent, hard work, and unwavering commitment to excellence.

Your dedication to your craft and the impact you’ve made in your field are truly commendable. It’s inspiring to see your efforts being celebrated on this prestigious platform.

Professional Profiles:

Education:

2023 M.Sc. Plant Genetics, Bayero University Kano, Nigeria

2016 Thesis: “Evaluation of Cyto-Genotoxicity of Pharmaceutical and Plastic industrial effluents in Metropolitan City of Kano  state, Nigeria using Allium cepa assay” GPA: 4.05/5.00

B.Sc. Botany (First Class Honours), Federal University Dutse, Nigeria 2016 Thesis: a comparative study of the effect of organic  and inorganic fertilizer on the growth and yield of Solanum lycopersicum. Final CGPA: 4.80/5.00.

2013 High school certificate, West African Examinations Council (WAEC)
Research Interests:
  •  Plant Molecular Genetics
  •  Plant Cytogenetic
  •  Plant Genetics and Breeding
  •  Plant Physiology
  •  Ethnomedicine

Publications Tops Notes:

Jibril, S. M., Yahaya, M., Usman, A., Eghobor, S., Bashir, M. M., Yahya, S. A., Mohammed, I. A., & Aisha, W. A. (2023). Evaluation of Cyto-Genotoxicity of Pharmaceutical Industrial Effluent in Kano Metropolis, Kano State, Nigeria, Using Allium Cepa L. Assay. UMYU Scientifica, 2(1), 106–114. https://doi.org/10.56919/usci.2123.013.

Jibril, S.M., Mansur M. M., Yahaya, S. A., Abdulmalik, S., Eghobor, S., Usman, A., Bashir, M. M., Idirisu, J. L. and Madu, A. H. (2023). Impact Assessment of Abattoir Wastewater on Growth and Yield of Solanum lycopersicum L (Tomato). Dutse Journal of Pure and Applied Sciences (DUJOPAS), 9 (3a): 303-311. https://dx.doi.org/10.4314/dujopas.v9i3a.30.

Mansur, M.M., Jibril, S.M., Umar, N.M., Madu, A.H., Zandam, N.D., Idirisu, J.L. and Makin, T.Y. (2023). Antibacterial Activities of Biologically Synthesized Silver Nanoparticles from Acalypha wilkesenia Coated with Some Antibiotics. Dutse Journal of Pure and Applied Sciences (DUJOPAS), 9 (3b): 54-62. https://dx.doi.org/10.4314/dujopas.v9i3b.7.

Yahaya, S. A., Mariam, N. I., Abulkarim, B. M., Jibril, S. M. and Umar, Y. I. (2023). Assessment of Genetic Diversity among 12 Sesamum indicum L. (Sesame) Genotypes from Five States in Northern Nigeria using RAPD Markers. Annual Research & Review in Biology (already accepted for publication).

Mansur, M.M., Jibril, S.M., Daneil J.A., Abdulmalik, S., Bashir, M. M., Usman, A., Yusuf, S., Ismail, M., Madu, A.H., & Zandam, N.D. (2023). Antibacterial Activity of the Leaf Extract of Acalypha wilkesiana against some Human Bacterial Pathogens. UMYU Scientifica, 2(4), 23–192 (already accepted for publication).

Wok Experience ;

  •   Federal University Dutse, Nigeria. 2020-present Graduate assistant: Taught BIO 201(Genetics I), BOT 306 (plant breeding) BOT 416 (plant    cytogenetic), and BOT203 (seed plants) Supervised, marked and graded over 600 undergraduate students in assignments, tests and examinations, supervised 13 final year undergraduate’s research projects.
  • Federal College of Education Katsina, Nigeria. 2017 -2019 Assistant Lecturer: Taught BIO 112 (Cell Biology), and BIO 111 (Introduction to Biology), supervised, and marked tests and inspection of examinations.

Research Experience:

Sample collection of pharmaceutical and plastic industrial effluents at the discharging point of Pharmaceutical and Plastic industries, Sharada, Kano State, Nigeria. 2021  Collection of Allium cepa bulbs from Yan Albasa Market, Kano State, Nigeria. 2021

Performed practical laboratory preparation of plant materials and techniques for chromosomal studies such as collection of root tips, pretreatment, fixation, hydrolysis, staining, slide preparation and microscopy at Umaru Musa Yaradua University laboratory, Nigeria.

Carried out tissue culture experiments at Nigeria Institute for Oil Palm Research (NIFOR), Dutse, branch, Nigeria.

Carried out DNA extraction, PCR, and Agarose Gel Electrophoresis at the Centre for Biotechnology Research, Bayero University Kano.

Carried out seed sowing, breaking of seed dormancy, field trial of experimental design, data collection, analysis and interpretation of the results at Kwara State Ministry of Agriculture and Natural Resources, Ilorin.

Membership:

  • Member, Nigeria Society for Microbiology(NSM) 2018 to date
  • Member, Muslim Students Society Of Nigeria(MSSN) 2014 to date

Leadership Experience:

  • Level advisor for 100 level Botany students 2023-to date
  • Deputy Chairman, Committee on Botanic Garden 2023-to date
  • Deputy Coordinator, Students Industrial Work Experience Scheme (SIWES), Department Of Biological Sciences, Federal University Dutse. 2021 –present
  • Class Representative, postgraduate Students of the Department of Plant Biology, Bayero University Kano, Nigeria. 2019-2021

Language Known:

 Very fluent in English

Nigerian’s official language of instruction.