Jaber Salehzadeh | Organic Synthesis | Research Excellence Award

Research Excellence Award

Jaber Salehzadeh
Provincial Water and Sewage Company, Iran

Jaber Salehzadeh
Affiliation Provincial Water and Sewage Company
Country Iran
Scholar ID fhaf0jMAAAAJ
Documents 24
Citations 310
h-index 9
Subject Area Organic Synthesis
Event Global Academic Awards

Jaber Salehzadeh has established an academic profile supported by publications, citations, and interdisciplinary research interests. Although affiliated with the Provincial Water and Sewage Company, the available scholarly record indicates research activity relevant to Organic Synthesis and related scientific applications. The available Google Scholar metrics indicate an active publication history with twenty-four documents, more than three hundred citations, and an h-index of nine.[1]

Abstract

Jaber Salehzadeh is a researcher associated with the Provincial Water and Sewage Company in Iran. According to the publicly available Google Scholar profile, the researcher has produced twenty-four scholarly publications that have collectively received more than three hundred citations, resulting in an h-index of nine. The documented publication record reflects continued scientific engagement in Organic Synthesis and associated interdisciplinary research areas, demonstrating a measurable academic presence through peer-reviewed research and scholarly dissemination.[1]

Keywords

Organic Synthesis, Synthetic Chemistry, Chemical Research, Reaction Engineering, Molecular Design, Green Chemistry, Scientific Publications, Research Excellence, Chemical Innovation, Academic Recognition.

Introduction

Organic Synthesis remains one of the foundational disciplines within modern chemistry, supporting discoveries across pharmaceuticals, materials science, catalysis, agriculture, and environmental technologies. Advances in synthetic methodologies continue to improve reaction efficiency, molecular complexity, sustainability, and industrial scalability. Researchers working in this field contribute to expanding chemical knowledge through innovative reaction pathways, characterization techniques, and practical applications that influence numerous scientific disciplines.[2]

Research Profile

The publicly available Google Scholar profile indicates that Jaber Salehzadeh has established a sustained publication record with twenty-four indexed scholarly works receiving approximately three hundred ten citations. The resulting h-index of nine reflects consistent citation activity across multiple publications. These indicators demonstrate continuing scholarly participation and measurable academic visibility within the research community.[1]

  • Affiliation: Provincial Water and Sewage Company
  • Country: Iran
  • Google Scholar Publications: 24
  • Total Citations: 310
  • h-index: 9

Research Contributions

The available scholarly profile suggests contributions involving Organic Synthesis and chemically related research. Research in this area commonly supports the development of efficient synthetic strategies, improved catalytic systems, environmentally responsible reaction processes, and the preparation of compounds with potential scientific and industrial significance. Such work contributes to expanding the broader knowledge base of modern chemistry.[2]

Publications

The documented publication portfolio demonstrates continued scholarly productivity through peer-reviewed research articles. Citation activity indicates that the published work has been referenced by other researchers, providing evidence of academic engagement and contribution to ongoing scientific discussions within chemistry and related disciplines.[1]

  • Twenty-four documented scholarly publications.
  • Research involving Organic Synthesis and related chemical sciences.
  • Peer-reviewed scientific dissemination supporting ongoing academic research.

Research Impact

Citation metrics provide quantitative evidence of scholarly influence. With approximately three hundred ten citations and an h-index of nine, the available academic indicators demonstrate that the published work has received recognition within the scientific community. These metrics represent measurable research visibility and continuing academic relevance.[1]

Award Suitability

Based on the documented scholarly metrics and publication record, Jaber Salehzadeh demonstrates characteristics frequently considered during academic recognition programs, including sustained research productivity, measurable citation performance, and continued scientific contributions. These documented achievements support consideration for the Research Excellence Award presented through the Global Academic Awards while acknowledging that award decisions depend upon the complete evaluation criteria established by the organizing committee.[1]

Conclusion

Jaber Salehzadeh has developed a documented scholarly profile characterized by peer-reviewed publications, measurable citation impact, and continued engagement in Organic Synthesis research. The available publication metrics demonstrate sustained academic participation and an established record of scientific contribution. Continued research productivity and scholarly collaboration are expected to further strengthen future academic impact within the broader chemical sciences community.[1]

References

  1. Google Scholar. (n.d.). Scholar profile: Jaber Salehzadeh, Scholar ID fhaf0jMAAAAJ.
    https://scholar.google.com/citations?user=fhaf0jMAAAAJ&hl=en&oi=sra
  2. Carey, F. A., & Sundberg, R. J. Advanced Organic Chemistry.
    DOI: https://doi.org/10.1007/978-0-387-44899-2
  3. A study on fractality properties of nano particles scanning electron microscopy images
    https://ljs.academicdirect.org/A25/111_116.htm

Siva Hariprasad Kurma | Chemistry | Research Excellence Award

Dr. Siva Hariprasad Kurma | Chemistry | Research Excellence Award

Dr. Siva Hariprasad Kurma is an NIH Postdoctoral Fellow specializing in synthetic methodologies and medicinal chemistry. He has published 20+ peer-reviewed articles with 242 citations, an h-index of 10, and strong impact since 2021. His research spans antimalarial drug design, heterocyclic synthesis, catalysis, and molecular modeling, contributing significantly to therapeutic chemistry and bioactive molecule development.

Citation Metrics (Google Scholar)

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150

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242

Documents
20

h-index
10

Citations
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View Google Scholar Profile

Featured Publications

Ni Wang | Chemistry | Young Scientist Award

Dr. Ni Wang | Chemistry | Young Scientist Award

Hubei University of Automobile Technology | China

Dr. Ni Wang, currently a Lecturer at the School of Optoelectronic Engineering and New Energy, Hubei University of Automotive Technology, holds a PhD in Inorganic Chemistry from Shaanxi Normal University (2021), along with a master’s and bachelor’s degree in chemistry. Her research primarily focuses on electrocatalysis, hydrogen evolution, and water oxidation, contributing significantly to sustainable energy and catalysis studies. She has published impactful works in prestigious journals including Angewandte Chemie International Edition, Chemical Science, Chinese Journal of Catalysis, and eScience, with several as first or co-first author, underscoring her scientific leadership and international collaboration. Her recent ongoing project, funded by the Hubei Provincial Science and Technology Department, investigates bioinspired bimetallic porphyrins for enhanced proton reduction mechanisms, highlighting her growing independence in research. With 21 publications, over 1,248 citations, and an h-index of 19, Dr. Wang exemplifies the qualities of a promising young scientist with strong potential for advancing the field of renewable energy catalysis.

Profile: Scopus

Featured Publications

  • Wang, N., Zhang, X.-P., Han, J., Lei, H., Zhang, Q., Zhang, H., Zhang, W., Apfel, U.-P., & Cao, R. (2023). Promoting hydrogen evolution reaction with a sulfonic proton relay. Chinese Journal of Catalysis, 45, 88–94.

  • Han, J., Wang, N., Li, X., Lei, H., Wang, Y., Guo, H., Jin, X., Zhang, Q., Peng, X., Zhang, X.-P., Zhang, W., Apfel, U.-P., & Cao, R. (2022). A cobalt(II) porphyrin with a tethered imidazole for efficient oxygen reduction and evolution electrocatalysis. eScience, 2, 623–631.

Sisem Ektirici | Computational Chemistry | Young Scientist Award

Ms. Sisem Ektirici | Computational Chemistry | Young Scientist Award

Ms. Sisem Ektirici | The Cyprus Institute | Cyprus

Ms. Sisem Ektirici is a highly accomplished young researcher currently pursuing her PhD in Computational Sciences at The Cyprus Institute under the Marie Sklodowska-Curie Fellowship within the ENGAGE program, supervised by Prof. V. Harmandaris. She holds a strong interdisciplinary background, having completed a Bachelor’s degree in Chemistry, a Master’s in Quantum Chemistry, and a Master’s in Biochemistry at Hacettepe University, followed by doctoral studies in Biochemistry. Her research focuses on biochemical molecules, protein–polymer complexes, and computational simulations with applications in biochemistry and materials science. She has an impressive publication record in high-impact journals, contributed book chapters, and delivered presentations at international conferences and workshops. Beyond research, she serves as a student representative for Marie Curie Fellowships, has translation experience for scientific and literary works, and actively engages in professional development through summer schools and workshops in high-performance computing and drug design. Her multidisciplinary expertise and international experience mark her as a promising young scientist.

Publication Profile

Scopus

Education

Ms. Sisem Ektirici has pursued a comprehensive and interdisciplinary academic path, beginning with a Bachelor’s degree in Chemistry from Hacettepe University, where she built a strong foundation in chemical principles and laboratory techniques. She continued her studies with a Master’s program in Quantum Chemistry at Hacettepe University, gaining advanced knowledge in computational methods and theoretical modeling. Following this, she completed a second Master’s degree in Biochemistry under the supervision of Professor Dr. Adil Denizli, where her thesis focused on the separation of nucleosides using zwitterionic monolithic columns in capillary electrochromatography systems, demonstrating her ability to integrate experimental and analytical techniques. Ms. Ektirici then pursued doctoral studies in Biochemistry at Hacettepe University, further deepening her expertise in biochemical systems and molecular mechanisms. Currently, she is undertaking a PhD in Computational Sciences at The Cyprus Institute as part of the Marie Sklodowska-Curie ENGAGE program, bridging her background in chemistry, biochemistry, and computational methodologies to advance interdisciplinary research in molecular and computational sciences.

Honors and Achievements

Ms. Sisem Ektirici has received several prestigious honours and scholarships recognizing her academic excellence and research potential. She is a recipient of the Marie Sklodowska-Curie Fellowship through the European Doctorate Program ā€œEnabling the Next Generation of Computational Physicists and Engineers,ā€ reflecting her outstanding capabilities in computational sciences. Her dedication to biochemistry was acknowledged with the YOK Scholarship, supporting her doctoral research. Earlier in her career, she was awarded the TUBITAK Project Research Scholarship for her contributions to quantum chemistry, including the derivation of analytical energy gradient expressions of density-fitted coupled-cluster methods, effective and parallel programming, and applications to weak interactions. Additionally, she was recognized as the last year honor student in the Chemistry Department at Hacettepe University, highlighting her consistent academic performance and commitment to excellence. These awards collectively demonstrate her strong research potential, interdisciplinary expertise, and sustained commitment to scientific advancement.

Work Experience

Ms. Sisem Ektirici has accumulated diverse professional experiences and developed a broad range of skills alongside her academic pursuits. She serves as a student representative for the Marie Curie Fellowships within the ENGAGE Programme, demonstrating leadership, communication, and advocacy skills in supporting her peers. She has professional experience at DESU MEDICAL and Hacettepe Technocity, where she was responsible for preparing and translating new product files as well as translating ISO standards for new products, showcasing her technical proficiency and attention to detail. Ms. Ektirici is also an experienced English-Turkish and Turkish-English translator, having translated three best-selling books, reflecting her linguistic expertise and cultural competence. Beyond her academic and professional accomplishments, she has pursued swimming professionally for fifteen years and plays both classical and electric guitars, highlighting her discipline, creativity, and commitment to personal growth. Her combination of scientific, technical, and artistic skills underscores her well-rounded capabilities and adaptability.

Research Focus

Ms. Sisem Ektirici’s research primarily focuses on the intersection of computational sciences, biochemistry, and materials chemistry, with a strong emphasis on molecular-level investigations of biochemical systems. Her work includes detailed atomistic simulations of protein–polymer complexes, such as alpha-synuclein and poly(N-isopropylacrylamide), as well as studies on the thermal stabilization and pH-dependent behavior of protein–polyelectrolyte systems like poly(acrylic acid)/lysozyme. She integrates computational modeling with experimental approaches to understand complex molecular interactions and functional mechanisms, providing insights into biomolecular stability and behavior under various environmental conditions. Additionally, her research extends to applied analytical chemistry, including the separation of nucleosides and histidine enantiomers via advanced electrochromatography techniques, and environmental applications such as the life cycle assessment of membranes for heavy metal removal from water. Overall, her work reflects a multidisciplinary approach combining computational modeling, experimental biochemistry, polymer science, and analytical chemistry to advance understanding of molecular interactions and their practical applications in biomedical and environmental contexts.

Publication Top Notes

A Study of Alpha-Synuclein and Poly(N-Isopropylacrylamide) Complex Formation through Detailed Atomistic Simulations

Complexation and Thermal Stabilization of Protein–Polyelectrolyte Systems via Experiments and Molecular Simulations: The Poly(Acrylic Acid)/Lysozyme Case

Investigating the Effects of pH and Temperature on the Properties of Lysozyme–Polyacrylic Acid Complexes via Molecular Simulation

Life Cycle Assessment of Membranes for Removing Heavy Metals from Water and Wastewater

Computational Investigation of the Monomer Ratio and Solvent Environment for the Complex Formed between Sulfamethoxazole and Functional Monomer Methacrylic Acid

Separation of Histidine Enantiomers by Capillary Electrochromatography with Molecularly Imprinted Monolithic Columns

Conclusion

Ms. Sisem Ektirici is highly suitable for the Research for Young Scientist Award. Her combination of academic excellence, innovative research in biochemistry and computational sciences, international recognition, and proactive engagement in scientific communities makes her a promising candidate whose work reflects both depth and future potential.

 

Mourad Ouhammou | Chemistry Award | Best Researcher Award

Prof. Dr. Mourad Ouhammou | Chemistry Award | Best Researcher Award

Dr. Ouhammou Mourad is a chemist and environmental researcher with a PhD in Chemistry and Environment from Cadi Ayyad University. With over 8 years of experience, he specializes in HQSE systems, phytochemistry, analytical chemistry, and eco-friendly waste management. He is a member of the ECOVAL cooperative and has held various academic and industry roles, including QSE manager and university trainer. His expertise spans polyphenols, flavonoids, food chemistry, and chromatographic techniques. Dr. Mourad has authored numerous scientific publications and actively contributes to international conferences and sustainability workshops. šŸŒ±šŸ”¬šŸ“Š

Publication Profile

Scopus

šŸŽ“ Education

Dr. Mourad earned his Doctorate in Chemistry and Environment in 2019 from the Faculty of Sciences Semlalia, Cadi Ayyad University, Marrakesh, with a thesis on the “Physico-Chemical Characterization and Eco-treatment of Industrial Waste from Textile SMEs.” He holds a Specialized Master’s degree (2010–2012) in Safety, Hygiene, Environment, and Quality Management (HQSE) from the same institution. His academic foundation includes a License degree in Chemistry (2006), a Diploma of General University Studies (DEUG) in Chemistry (2004–2005), and a Baccalaureate in Experimental Sciences (2002) from Mohammed VI High School in Ouarzazate. Dr. Mourad has pursued ongoing professional development, including ISO 17025 laboratory competence training, integrated QHSE system management, and international reviewer certifications for academic journals. He also completed internships and fellowships in France, contributing to his expertise in green chemistry, chromatography, and advanced analysis techniques. šŸ“˜šŸ§«šŸ“

šŸ’¼ Experience

Dr. Mourad has amassed diverse experience as a teacher, trainer, laboratory assistant, and QHSE manager across academia and industry. Since 2015, he has contributed to educational modules at Cadi Ayyad University in environmental engineering, water treatment, and organic chemistry. He has worked as a QSE Manager at SUPER FLOR (SARL) and as a co-manager for the SCIMATOP laboratory’s innovation project. His industrial experience includes water quality control, environmental auditing in textile production, and analysis of chemical risks. He has interned at INRA France and UniversitĆ© Grenoble Alpes, gaining exposure to advanced instrumentation and research methodologies. As a member of EcoVal Cooperative, he focuses on sustainable waste treatment. Mourad has also played significant roles in organizing international conferences on health, sustainability, and environmental sciences. His expertise extends to FTIR, UV, ICP, HPLC, BET, and more, making him a key figure in scientific innovation and ecological initiatives. šŸ­šŸ§ŖšŸ‘Øā€šŸ«

šŸ… Awards and Honors

Dr. Mourad has received numerous certifications and honors reflecting his contributions to environmental science, analytical chemistry, and academic excellence. Notably, he holds a Certificate of Contribution to various academic programs and workshops at Cadi Ayyad University. He was awarded reviewer confirmation certificates for top-tier journals including Molecules, Foods, Processes, and Forests in 2022–2023. In 2014, he was recognized as a Young Climate Ambassador at COP 22 in Marrakesh. Mourad has also been actively involved in international symposia and congresses on food security, water quality, and sustainable agriculture. His leadership in organizing African congresses on environmental toxicology and health security has garnered recognition. His continuing education includes prestigious training in ISO systems, metrology, HACCP, and integrated QHSE management. These accolades underscore his commitment to interdisciplinary excellence, innovation, and environmental stewardship. šŸ†šŸŒ±šŸ“œ

šŸ”¬ Research Focus

Dr. Mourad’s research is rooted in environmental chemistry, phytochemistry, and instrumental analysis, with a focus on sustainable solutions for industrial waste and food chemistry. His PhD work addressed eco-treatment of textile industry waste using physico-chemical methods. He is deeply engaged in analyzing polyphenols, flavonoids, and other bioactive compounds from natural sources using chromatography, Soxhlet extraction, and spectroscopy. His expertise spans antioxidant activity, natural product extraction, and analytical method development. He explores the use of green chemistry principles in waste valorization and phytochemical research. Mourad’s scientific endeavors bridge academia and industry, supporting innovations in solar drying, instrumental techniques (HPLC, FTIR, ICP), and herbal medicine. Through interdisciplinary collaborations and cooperative initiatives like ECOVAL, he aims to advance eco-friendly technologies in waste management and food bioactivity. šŸŒæšŸ”¬ā™»ļø

Publication Top Notes

  • šŸ“„ “Textile wastewater discoloration by Fenton oxidation process” – Moroccan Journal of Chemistry, 2019. Cited by: 9.

  • šŸ“„ “Comparative sorption isotherms of conserved Thymus satureioides” – Moroccan Journal of Chemistry, 2016. Cited by: 5.

  • šŸ“„ “Comparative moisture sorption isotherms, modelling and isosteric heat of sorption of controlled and irradiated Moroccan rosemary leaves” – Industrial Crops and Products, 2016. Cited by: 31.

  • šŸ“„ “Green chemistry for treatment of liquid discharges from a dyeing industry: bio coagulation and flocculation” – Moroccan Journal of Chemistry, 2016. Cited by: 6.

  • šŸ“„ “Valorisation of cellulosic waste basic cactus to prepare activated carbon” – Journal of the Saudi Society of Agricultural Sciences, 2019. Cited by: 88.

  • šŸ“„ “Decontamination by gamma irradiation at low doses of Thymus satureioides and its impact on physico-chemical quality” – Food and Bioproducts Processing, 2016. Cited by: 10.

  • šŸ“„ “Drying Characteristics and Kinetics Solar Drying of Moroccan Rosemary Leaves” – Renewable Energy, 2017. Cited by: 32.

  • šŸ“„ “Investigation of water adsorption and thermodynamic properties of stevia powder” – Journal of Food Measurement and Characterization, 2016. Cited by: 7.

  • šŸ“„ “Impact of particle size on functional, physicochemical properties and antioxidant activity of cladode powder (Opuntia ficus-indica)” – Journal of Food Science and Technology, 2019. Cited by: 15.

  • šŸ“„ “Impact of solar drying process on drying kinetics, and on bioactive profile of Moroccan sweet cherry” – Renewable Energy, 2020. Cited by: 6.

Abdurrahman Şengül | Inorganic Chemistry | Best Researcher Award

Prof. Dr. Abdurrahman Şengül | Inorganic Chemistry | Best Researcher Award

Head of Inorganic Chemistry Division, PhD at Zonguldak Bülent Ecevit University , Turkey.

šŸ“Œ Prof. Dr. Abdurrahman Şengül is a distinguished Professor of Inorganic Chemistry at Zonguldak Bülent Ecevit University, Turkey. He holds a Ph.D. from the University of Wales, Cardiff, UK (1998), specializing in coordination chemistry, heterocycles, macrocycles, phthalocyanines, photovoltaics, and metallodrugs. With over 30 years of academic experience, he has served as Head of Inorganic Chemistry Division and contributed significantly to research on DNA interactions, cyclophanes, and dyestuffs. A recipient of the Turkish Government Scholarship, he has published extensively and reviews for journals like Turkish Journal of Chemistry and Spectrochim Acta Part A. Fluent in Turkish and English, he continues advancing inorganic chemistry. šŸ§ŖšŸ”¬

Publication ProfileĀ 

Google Scholar

Academic Background

Prof. Dr. Abdurrahman Şengül has an extensive academic background in Inorganic Chemistry. He earned his BSc (1991) and MSc (1993) from Ƈukurova University, Turkey, focusing on melamine derivatives. He completed his Ph.D. (1998) at the University of Wales, Cardiff, UK, researching N-heterocycle complexes with platinum(II)āš—ļø. He later pursued a postdoctoral fellowship (2002-2003) at Tamkang University, Taiwan, studying supramolecular chemistry. Additionally, he engaged in research at Saint-Petersburg State University, Russia (2012)šŸ”¬ and participated in the Erasmus Staff Exchange Program at Cardiff University (2009). Currently, he is a Professor at Zonguldak Bülent Ecevit University, advancing metallodrug and DNA interaction studies. šŸ“ššŸ‘Øā€šŸ«

Profession Background

Prof. Dr. Abdurrahman Şengül has a rich teaching portfolio, delivering courses in General & Inorganic Chemistry, Coordination Chemistry, Supramolecular Chemistry, and Symmetry & Group Theory for MSc and Ph.D. students. He also supervises MSc and Ph.D. research. šŸ“š As a referee for prestigious journals, he contributes to the scientific community. His synthetic expertise includes air-sensitive material synthesis, transition metal complexes, macrocycles, phthalocyanines, and ATRP catalysts. 🧪 His research focuses on metal-ion self-assembly, DNA interactions, and photovoltaic materials, particularly perylene diimides, applied in solar cells, sensors, and nonlinear optics. āš—ļøšŸ”¬

šŸ”¬ Research FocusĀ 

Prof. Dr. Abdurrahman Şengül specializes in inorganic and coordination chemistry, focusing on transition metal complexes, supramolecular architectures, and metallo-supramolecular compounds. āš—ļø His research explores polyamide and polyester-based ligands, dioxime derivatives, and heterocyclic metal complexes. 🧪 His projects, supported by TUBITAK and university grants, investigate polypyridine ligands, multifunctional supramolecular systems, and platinum(II)/palladium(II) saccharine complexes. šŸ… Additionally, he applies metallodrugs and photochemistry to analytical and biomedical sciences. His work has significant implications in material science, photovoltaics, and bioinorganic chemistry. šŸŒšŸ’”

Publication Top Notes

Platinum (II) and palladium (II) saccharinato complexes with 2,2′:6′,2″-terpyridine: Synthesis, characterization, crystal structures, photoluminescence, and thermal studies
šŸ“… Year: 2010 | šŸ” Cited by: 76

Kinetics of COā‚‚ adsorption on ball-type dicopper phthalocyanine thin film
šŸ“… Year: 2014 | šŸ” Cited by: 40

 Synthesis, characterization, and DNA binding of complexes [Pt(bpy)(pip)]²⁺ and [Pt(bpy)(hpip)]²⁺
šŸ“… Year: 2013 | šŸ” Cited by: 37

DNA studies of newly synthesized heteroleptic platinum(II) complexes [Pt(bpy)(iip)]²⁺ and [Pt(bpy)(miip)]²⁺
šŸ“… Year: 2016 | šŸ” Cited by: 32

Conclusion

Prof. Dr. Abdurrahman Şengül is a distinguished researcher in inorganic and supramolecular chemistry, with a Ph.D. from the University of Wales and postdoctoral research at Tamkang University. His expertise spans coordination chemistry, macrocycles, phthalocyanines, photovoltaics, metallodrugs, and DNA interactions, contributing significantly to interdisciplinary research. With numerous high-impact publications in renowned journals, prestigious awards like the Turkish Government Scholarship, and leadership roles as Head of the Inorganic Chemistry Division, he has demonstrated excellence in academia. His international collaborations across Turkey, the UK, Taiwan, and Russia further highlight his global research impact, making him a strong candidate for the Best Researcher Award.

Zhenhai Wen | Materials chemistry | Best Researcher Award

Dr. Zhenhai Wen | Materials chemistry | Best Researcher Award

Dr. Zhenhai Wen, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, China

Dr. Zhenhai Wen is a Professor at the Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences. He earned his Ph.D. in Chemistry from the Chinese Academy of Sciences/Tsinghua University (2008) and completed postdoctoral research at Max Planck Institute (Germany) and University of Wisconsin-Milwaukee (USA). His work focuses on functional nanostructures for electrochemical energy conversion and storage. A Highly Cited Researcher (2018-2023), he has received prestigious awards, including the National Science Fund for Distinguished Young Scholars (2022). Dr. Wen has led multiple high-impact research projects on hydrogen generation and fuel cells. šŸš€šŸ”‹

Publication Profile

Google Scholar

Education Background šŸŽ“šŸ“š

Dr. Zhenhai Wen holds a Ph.D. in Chemistry from the Chinese Academy of Sciences/Tsinghua University (2008), where he conducted research under Prof. JingHong Li. He earned his M.Sc. in Environmental Science from Beijing University of Technology (2004), guided by Prof. Tianfang Kang. His academic journey began with a B.Sc. in Chemistry from Gannan Normal University (1998), mentored by Prof. XuZhong Luo. His strong educational foundation has played a pivotal role in shaping his expertise in functional nanostructures, electrochemical energy conversion, and storage systems. šŸ†šŸ”¬

Research Experience šŸ”¬šŸ“–

Dr. Zhenhai Wen has been a Professor at the Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences since 2015, leading advancements in functional nanostructures and electrochemical energy systems. Previously, he was a postdoctoral researcher at the University of Wisconsin-Milwaukee (2010-2014) and a visiting scholar at the University of Texas, Austin (2013). He also held a Humboldt postdoctoral fellowship at the Max Planck Institute for Polymer Research (2009-2010). Earlier roles include Assistant Professor at Nanchang Hangkong University (2008-2009) and Research Scholar at Beijing Titan Instruments Co., Ltd (2004-2005). āš”šŸ”‹

Awards & Recognitions šŸ†šŸŽ–ļø

Dr. Zhenhai Wen has received numerous prestigious awards for his contributions to nanostructure design and electrochemical energy research. He was honored with the National Science Fund for Distinguished Young Scholars (2022) and recognized as a Highly Cited Researcher by Clarivate Analytics (2018-2023). He was selected for the Hundred Talents Program of Fujian Province (2015) and the 1000 Plan Professorship for Young Talents (2014). His early accolades include the JinGang Scholar Professorship (2014), Alexander von Humboldt-Foundation Scholarship (2009), Dean Scholarship of the Chinese Academy of Sciences (2008), and Excellent Graduate Student Award of Beijing University of Technology (2004). šŸŒšŸ”¬

Research Focus šŸ”¬āš”

Dr. Zhenhai Wen specializes in nanostructured materials for energy storage and conversion, with a strong emphasis on electrocatalysis, supercapacitors, batteries, and gas sensing. His work spans graphene-based materials, metal-organic frameworks (MOFs), and high-entropy alloys, contributing to advancements in fuel cells, hydrogen evolution, and COā‚‚ reduction. His research also explores functional nanomaterials for lithium-ion batteries, oxygen reduction reactions (ORR), and photoelectrochemical applications. Recognized as a highly cited researcher, Dr. Wen’s interdisciplinary work bridges chemistry, materials science, and renewable energy technologies. šŸŒ±āš›ļøšŸ”‹

Publication Top Notes

  • Crumpled nitrogen‐doped graphene nanosheets with ultrahigh pore volume for high‐performance supercapacitor – 1029 citations (2012)
  • Electrocatalysis for COā‚‚ conversion: from fundamentals to value-added products – 897 citations (2021)
  • Constructing 2D porous graphitic Cā‚ƒNā‚„ nanosheets/nitrogen-doped graphene/layered MoSā‚‚ ternary
  • nanojunction with enhanced photoelectrochemical activity – 850 citations (2013)
  • An advanced nitrogen‐doped graphene/cobalt‐embedded porous carbon polyhedron hybrid for efficient
  • catalysis of oxygen reduction and water splitting – 755 citations (2015)
  • Ultrahigh sensitivity and layer-dependent sensing performance of phosphorene-based gas sensors – 715 citations (2015)
  • Ā A hybrid supercapacitor fabricated with a carbon nanotube cathode and a TiO₂–B nanowire anode – 695 citations (2006)
  • High-performance bi-functional electrocatalysts of 3D crumpled graphene–cobalt oxide nanohybrids for oxygen reduction and evolution reactions – 670 citations (2014)
  • Nitrogen‐enriched core‐shell structured Fe/Feā‚ƒC‐C nanorods as advanced electrocatalysts for oxygen reduction reaction – 569 citations (2012)
  • Oxygen‐containing amorphous cobalt sulfide porous nanocubes as high‐activity electrocatalysts for the oxygen evolution reaction in an alkaline/neutral medium – 564 citations (2017)
  • Metalāˆ’Organic Framework‐Derived Nitrogen‐Doped Core‐Shell‐Structured Porous Fe/Feā‚ƒC@C Nanoboxes Supported on Graphene Sheets for Efficient Oxygen Reduction – 563 citations (2014)
  • In situ growth of mesoporous SnOā‚‚ on multiwalled carbon nanotubes: A novel composite with porous‐tube structure as anode for lithium batteries – 545 citations (2007)
  • Stabilizing MoSā‚‚ Nanosheets through SnOā‚‚ Nanocrystal Decoration for High‐Performance Gas Sensing in Air – 390 citations (2015)
  • Core/shell Pt/C nanoparticles embedded in mesoporous carbon as a methanol-tolerant cathode catalyst in direct methanol fuel cells – 389 citations (2008)
  • N-doped porous carbon nanosheets as pH-universal ORR electrocatalyst in various fuel cell devices – 344 citations (2018)
  • Vertically oriented graphene bridging active-layer/current-collector interface for ultrahigh rate supercapacitors – 324 citations (2013)
  • High entropy alloy electrocatalytic electrode toward alkaline glycerol valorization coupling with acidic hydrogen production – 312 citations (2022)
  • An electrochemically neutralized energy-assisted low-cost acid-alkaline electrolyzer for energy-saving electrolysis hydrogen generation – 312 citations (2018)
  • Silicon nanotube anode for lithium-ion batteries – 307 citations (2013)
  • Tuning gas-sensing properties of reduced graphene oxide using tin oxide nanocrystals – 306 citations (2012)

Ana-Maria Resmerita | Supramolecular Chemistry | Best Researcher Award

Dr. Ana-Maria Resmerita | Supramolecular Chemistry | Best Researcher Award

Dr. Ana-Maria Resmerita, Institutul de Chimie Macromoleculara “Petru Poni”, Iasi, Romania

Dr. Ana-Maria Resmeriță – Evaluation for Best Researcher Award

Publication profile

Scientific Interests and Expertise

Dr. Ana-Maria Resmeriță’s research focuses on the development of supramolecular networks based on polyrotaxanes, which have significant applications in electronics and optoelectronics. Her expertise includes synthesizing insulated and conjugated polyrotaxanes architectures, emphasizing the functionalization of materials for advanced technological applications. Her contributions in this area are noteworthy, given the growing importance of electronic materials.

Education and Training

Dr. Resmeriță holds a PhD in Chemistry and a Master’s degree in Bio-polymeric Materials from the ā€œGh. Asachiā€ Technical University, Romania. She further advanced her research skills through post-doctoral fellowships at the University of Pennsylvania, USA, and ā€œGh. Asachiā€ Technical University, Romania. Her academic training reflects a solid foundation in polymer chemistry and advanced materials science.

Work Experience and Research Activities

With a robust background in the synthesis of supramolecular networks, Dr. Resmeriță has significant expertise in developing cross-linked polyrotaxanes, permodified cyclodextrins, and light-stimuli responsive azopolymers for optoelectronic applications. Her experience extends to a variety of characterization techniques, including infrared spectroscopy and nuclear magnetic resonance, which are essential for analyzing the properties of advanced polymeric materials.

Scientific Record

Dr. Resmeriță has an impressive scientific record with 47 published articles in ISI-indexed journals and contributions to three book chapters. She has actively participated in seven research projects, highlighting her collaborative spirit and commitment to advancing scientific knowledge in her field.

International Visibility

With a Hirsch index of 14 and over 1500 citations, Dr. Resmeriță’s work is widely recognized within the international scientific community. Her contributions to the field of macromolecular chemistry are well-cited, reflecting her impact and influence. Her visibility is further enhanced through her presence on academic platforms such as Brainmap and ORCID.

Publication Top Notes

  • “Composite materials based on slide‐ring polyrotaxane structures for optoelectronics” – Journal of Polymer Science (2024) DOI: 10.1002/pol.20240285 šŸ“„
  • “Inclusion Complexes of 3,4-Ethylenedioxythiophene with Per-Modified β- and γ-Cyclodextrins” – MOLECULES (2023) DOI: 10.3390/molecules28083404 šŸ“„
  • “Novel Insight into the Photophysical Properties and 2D Supramolecular Organization of Poly(3,4-ethylenedioxythiophene)/Permodified Cyclodextrins Polyrotaxanes at the Air-Water Interface” – MATERIALS (2023) DOI: 10.3390/ma16134757 šŸ“„
  • “Structural characteristics and the label-free detection of poly(3,4-ethylenedioxythiophene/cucurbit[7]uril) pseudorotaxane at single molecule level” – NANO RESEARCH (2023) DOI: 10.1007/s12274-022-4918-x šŸ“„
  • “Synthesis, Properties and Adsorption Kinetic Study of New Cross-Linked Composite Materials Based on Polyethylene Glycol Polyrotaxane and Polyisoprene/Semi-Rotaxane” – MATERIALS (2023) DOI: 10.3390/ma16165594 šŸ“„
  • “Thermal and Dielectric Investigations of Polystyrene Nanoparticles as a Viable Platform-Toward the Next Generation of Fillers for Nanocomposites” – POLYMERS (2023) DOI: 10.3390/polym15132899 šŸ“„
  • “Evaluation of the Chemical, Morphological and Dielectric Properties of Supramolecular Networks Consisting of Polyethylene Glycol Polyrotaxanes and Polystyrene/Semi-Rotaxane with Hydroxypropyl-β-Cyclodextrins” – MACROMOLECULAR CHEMISTRY AND PHYSICS (2022) DOI: 10.1002/macp.202100383 šŸ“„
  • “New ARBOFILL composites: preparation and characterization” – POLYMER-PLASTICS TECHNOLOGY AND MATERIALS (2022) DOI: 10.1080/25740881.2022.2084410 šŸ“„
  • “Structural and morphological characterization of a new semi-polyrotaxane architecture based on 2-hydroxypropyl-β-cyclodextrins and polyisoprene” – REACTIVE & FUNCTIONAL POLYMERS (2022) DOI: 10.1016/j.reactfunctpolym.2022.105459 šŸ“„
  • “Synthesis, Photophysics, and Langmuir Films of Polyfluorene/Permodified Cyclodextrin Polyrotaxanes” – LANGMUIR (2021) DOI: 10.1021/acs.langmuir.1c02014 šŸ“„
  • “Morphological and Electronic Properties of Poly(ethylene glycol)/RAMEB Polyrotaxane and Polypyrrole Supramolecular Networks” – MACROMOLECULAR CHEMISTRY AND PHYSICS (2020) DOI: 10.1002/macp.202000011 šŸ“„
  • “Photophysics of poly(3,4-ethylenedioxythiophene) covered by permodified γ-cyclodextrin” – ADVANCED TOPICS IN OPTOELECTRONICS, MICROELECTRONICS AND NANOTECHNOLOGIES X (2020) DOI: 10.1117/12.2572091 šŸ“„
  • “Cucurbit[7]uril-Threaded Poly(3,4-ethylenedioxythiophene): A Novel Processable Conjugated Polyrotaxane” – EUROPEAN JOURNAL OF ORGANIC CHEMISTRY (2019) DOI: 10.1002/ejoc.201801724 šŸ“„
  • “Novel supramolecular networks based on PEG and PEDOT cross-linked polyrotaxanes as electrical conductive materials” – EUROPEAN POLYMER JOURNAL (2019) DOI: 10.1016/j.eurpolymj.2019.02.015 šŸ“„
  • “Erosion as a possible mechanism for the decrease of size of plastic pieces floating in oceans” – MARINE POLLUTION BULLETIN (2018) DOI: 10.1016/j.marpolbul.2017.12.025 šŸ“„

Conclusion

Dr. Ana-Maria Resmeriță’s extensive research in supramolecular networks and polymer chemistry, coupled with her strong publication record and international recognition, makes her a highly suitable candidate for the Best Researcher Award. Her work not only advances scientific understanding but also contributes to practical applications in electronics and optoelectronics, demonstrating her significant impact in the field.