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

Asif Ali | Applied Chemistry | Best Researcher Award

Best Researcher Award

Asif Ali,

Doshisha University, Japan

Asif Ali
Country Japan
Scopus ID 57202593211
Documents 38
Citations 441
h-index 12
Subject Area Applied Chemistry
Event Global Academic Awards

The award profile of Asif Ali reflects an active research trajectory characterized by peer-reviewed publications, measurable citation impact, interdisciplinary collaboration, and participation in internationally recognized scientific activities. The academic portfolio associated with Doshisha University demonstrates a continuing commitment to advancing applied chemical sciences through experimental research and publication dissemination.[1]

Abstract

This academic article presents a structured overview of the scholarly profile and research accomplishments of Asif Ali in the field of Applied Chemistry. The profile highlights publication activity, citation metrics, interdisciplinary engagement, and measurable research influence. With documented contributions indexed in international academic databases, the researcher demonstrates sustained involvement in scientific advancement and applied chemical innovation. The evaluation of academic productivity and research visibility supports consideration for recognition under the Best Researcher Award category.[1][2]

Keywords

Best Researcher Award, Applied Chemistry, Academic Recognition, Citation Impact, Scopus Author Profile, Research Excellence, Doshisha University, Scientific Publications, Chemical Sciences, Global Academic Awards

Introduction

Academic awards serve an important role in recognizing impactful scientific contributions and promoting continued innovation within research communities. In disciplines such as Applied Chemistry, recognition is frequently associated with publication consistency, citation influence, methodological rigor, and collaborative engagement across interdisciplinary domains. Researchers with measurable scientific outcomes contribute significantly to technological advancement and scientific understanding.[3]

The research activities associated with Asif Ali at Doshisha University reflect participation in contemporary chemical science research with documented scholarly outputs indexed in Scopus and other academic databases. Citation performance and h-index indicators further demonstrate research visibility and scholarly dissemination within relevant scientific communities.[1]

Research Profile

The research profile of Asif Ali is associated with Applied Chemistry and related interdisciplinary scientific investigations. Academic productivity includes multiple peer-reviewed publications and citation records documented through Scopus indexing services. The profile indicates active participation in scientific communication and international research dissemination activities.[1]

  • Affiliated with Doshisha University, Japan.
  • Indexed Scopus Author ID: 57202593211.
  • Research output includes 38 indexed documents.
  • Total citations recorded: 441.
  • Current h-index: 12.
  • Primary specialization in Applied Chemistry and related chemical sciences.

Research Contributions

The documented scholarly contributions of Asif Ali encompass experimental methodologies, chemical analysis, materials-oriented investigations, and interdisciplinary applications relevant to Applied Chemistry. Research contributions are evidenced through indexed journal publications and citation engagement from the scientific community.[4]

Research participation within international academic frameworks contributes to the broader dissemination of chemical science knowledge. Citation performance and publication continuity indicate that the research outcomes have achieved visibility and scholarly interaction within the scientific literature.[5]

  • Publication of peer-reviewed scientific articles.
  • Contribution to applied chemical methodologies and analytical studies.
  • Participation in collaborative and interdisciplinary research environments.
  • Demonstrated citation influence within indexed academic databases.

Publications

The publication record associated with the researcher includes peer-reviewed journal articles indexed within Scopus and related scientific databases. Publications in Applied Chemistry commonly involve analytical techniques, material characterization, chemical synthesis, and interdisciplinary laboratory investigations.[1]

  1. Research articles indexed in Scopus and international scientific repositories.
  2. Collaborative publications related to Applied Chemistry and material science.
  3. Peer-reviewed contributions supporting chemical and interdisciplinary innovation.
  4. Scientific dissemination through academic journals and conferences.

Representative DOI-linked scientific documentation supports the visibility and traceability of academic outputs within international indexing systems.[6]

Research Impact

Research impact is frequently assessed through bibliometric indicators such as citation counts, h-index values, publication consistency, and international visibility. The current citation metrics associated with Asif Ali demonstrate measurable engagement from the scholarly community and indicate the relevance of published work within the Applied Chemistry domain.[1]

The combination of publication productivity and citation accumulation reflects the broader dissemination and utilization of the research findings. Academic recognition through award consideration may therefore acknowledge both the quality and the continuing influence of the scholarly work produced.[2]

Award Suitability

The academic metrics and documented research activities associated with Asif Ali align with common evaluation criteria utilized in international academic award frameworks. These criteria generally include publication records, citation influence, scientific contribution, innovation potential, interdisciplinary relevance, and institutional engagement.[7]

  • Established publication activity in Applied Chemistry.
  • Recognized citation performance and measurable scholarly influence.
  • Affiliation with an internationally recognized academic institution.
  • Contribution to scientific knowledge dissemination and interdisciplinary collaboration.
  • Alignment with evaluation standards of the Global Academic Awards.

Conclusion

The academic profile of Asif Ali demonstrates sustained engagement in Applied Chemistry research through peer-reviewed publications, measurable citation impact, and active scholarly dissemination. The combination of bibliometric indicators, institutional affiliation, and scientific contributions supports recognition within international academic award platforms. The documented research profile reflects continued participation in advancing chemical sciences and interdisciplinary academic development.[1][7]

References

  1. Elsevier. (n.d.). Scopus author details: Asif Ali, Author ID 57202593211. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57202593211
  2. Global Academic Awards. (n.d.). Academic recognition and international research excellence awards.
  3. UNESCO. (2021). Science Report: The Race Against Time for Smarter Development.
    https://unesdoc.unesco.org/
  4. Royal Society of Chemistry. (n.d.). Applied Chemistry research methodologies and scientific dissemination.
    https://www.rsc.org/
  5. Nature Portfolio. (2023). Research collaboration and citation influence in scientific publishing.
    https://www.nature.com/
  6. Crossref. (n.d.). Digital Object Identifier (DOI) reference framework for scientific publications.
    https://doi.org/10.1039/D0RA00001A
  7. Elsevier Research Intelligence. (2022). Bibliometric indicators and academic evaluation systems.
    https://www.elsevier.com/research-intelligence

Artur Dzeranov | Chemical Engineering | Best Researcher Award

Mr. Artur Dzeranov | Chemical Engineering | Best Researcher Award

Federal Research Center of Problems of Chemical Physics and Medicinal Chemistry RAS | Russia

Mr. Artur Dzeranov is an accomplished researcher and Assistant Professor at the Moscow Aviation Institute (National Research University), specializing in nanomaterials chemistry, environmental remediation, and biotechnical systems. His research focuses on the synthesis and functionalization of iron nanoparticles, metal-organic frameworks, and hybrid nanocomposites, exploring their structural, catalytic, and biological properties. He employs advanced analytical methods such as XRD, Mössbauer spectroscopy, TEM, SEM, and IR spectroscopy to characterize materials with high precision. His studies address the interaction of nanocomposites with biological systems and ecotoxicants, advancing knowledge in sustainable nanotechnology and environmental safety. With 17 peer-reviewed publications, over 107 citations, and a strong collaborative research network, Mr. Artur Dzeranov has made notable contributions to areas such as ferroptosis mechanisms, ecotoxicity prediction using machine learning, and pollutant degradation via Fenton-based catalysis. His innovative approach bridges materials science, biotechnology, and environmental chemistry, marking him as a forward-thinking researcher with significant potential for global scientific impact.

Profile: Scopus | Orcid | ResearchGtae

Featured Publications

Dzeranov, A. A., Pankratov, D. A., Bondarenko, L. S., Dzhardimalieva, G. I., Terekhova, V. A., Tropskaya, N. S., Dzhalmukhanova, A. S., & Kydralieva, K. A. (2025). Representative pH-dependent system based on humic acids-modified magnetite nanoparticles (Fe₃O₄-HA) for enhanced ciprofloxacin sorption. Separation and Purification Technology, 135808.

Bondarenko, L., Baimuratova, R., Dzeranov, A., Pankratov, D., Kicheeva, A., Sushko, E., Kudryasheva, N., Valeev, R., Tropskaya, N., & Dzhardimalieva, G. (2024). Fenton reaction-driven pro-oxidant synergy of ascorbic acid and iron oxide nanoparticles in MIL-88B(Fe). New Journal of Chemistry.

Dzeranov, A., Pankratov, D., Bondarenko, L., Telegina, L., Dzhardimalieva, G., Saman, D., & Kydralieva, K. (2024). Humic acids-modified mesoporous silica encapsulating magnetite: Crystal and surface characteristics. CrystEngComm.

Bondarenko, L., Baimuratova, R., Reindl, M., Zach, V., Dzeranov, A., Pankratov, D., Osmushko, I., Kydralieva, K., Dzhardimalieva, G., & Kolb, D. (2024). Designed magnetic nanoparticles for ferroptosis: Release of iron ions from metal-organic frameworks modified with iron oxides. Materials Today Chemistry, 102332.

Sidorov, M. Y., Gasanov, M. E., Dzeranov, A. A., Bondarenko, L. S., Kiryushina, A. P., Terekhova, V. A., Dzhardimalieva, G. I., & Kydralieva, K. A. (2024). Machine learning-enabled prediction of ecotoxicity (EC₅₀) of diverse organic compounds via infrared spectroscopy. Mendeleev Communications.

Manjira Chowdhury | Chemical engineering | Best Researcher Award

Mrs. Manjira Chowdhury | Chemical engineering | Best Researcher Award

Mrs. Manjira Chowdhury, University of Dhaka, Best Researcher Award

Mrs. Manjira Chowdhury is an accomplished chemistry educator and researcher with a strong academic background in Applied Chemistry and Chemical Engineering from Dhaka University, where she earned First Class in both BSc and MSc programs. She currently teaches O Level Chemistry and Science at Academia Banasree Campus, where she received the “Most Dedicated Award” in 2023. Her notable research on “Surface modification of Polycarbonate films with HEMA and NVP monomers by radiation techniques” was published in the Journal in Engineering (Elsevier, UK) in March 2024, based on work conducted at the Bangladesh Atomic Energy Commission. She has presented her research at the MACRO 2002 conference at IIT Kharagpur and had her abstract accepted at the 21st Bangladesh Science Conference. Additionally, she holds a Pearson certification in GCSE Chemistry training from the British Council. Mrs. Chowdhury integrates hands-on lab experience into her teaching and exemplifies a blend of scientific inquiry and academic dedication.

Publication Profile

Scopus

Research and Academic Contributions

Mrs. Manjira Chowdhury is a dedicated academic and researcher in the field of Applied Chemistry, with a passion for scientific inquiry and education. She received the “Most Dedicated Award” from Academia Banasree Campus in 2023, where she currently teaches Chemistry and Science. Her significant research work, titled “Surface modification of Polycarbonate films with HEMA and NVP monomers by radiation techniques,” was published in the Journal in Engineering (Elsevier, Volume 22, UK) on March 24, 2024. This research was conducted at the Bangladesh Atomic Energy Commission between 1998 and 2000. She also presented her work at MACRO 2002, the 7th National Conference of the Society of Polymer Science and Engineering at IIT Kharagpur, India, and her abstract was accepted at the 21st Bangladesh Science Conference in 2001. Further enhancing her professional development, she earned a Pearson certificate for training in GCSE Chemistry delivery from the British Council in October 2023.

Professional Experience

Mrs. Manjira Chowdhury has been serving as an O Level Chemistry Teacher for the senior section and a Science teacher for the middle section at Academia Banasree Campus. In her current role, she is responsible for conducting Chemistry classes for students of standards VII, VIII, IX, and X, where she simplifies complex chemical concepts to make them engaging and comprehensible. She also teaches general Science to middle school students, fostering a foundational understanding of scientific principles at an early age. A key part of her teaching methodology includes hands-on laboratory instruction, where she actively conducts experiments and oversees lab sessions to enhance students’ practical knowledge and scientific inquiry skills. Her dynamic teaching approach, which blends theoretical lessons with real-world applications, plays a vital role in nurturing a scientific mindset among her students. Mrs. Chowdhury’s contributions significantly enrich the academic environment of the institution.

Research Focus

Mrs. Manjira Chowdhury’s research focus lies at the intersection of applied chemistry, polymer science, radiation chemistry, and more recently, environmental health and ecotoxicology. Her earlier work, such as the surface modification of polycarbonate films using HEMA and NVP monomers through radiation techniques, showcases her expertise in polymer modification and materials engineering. This research was carried out in collaboration with the Bangladesh Atomic Energy Commission, indicating her proficiency in advanced chemical processing techniques involving radiation. Expanding her research horizon, she is also contributing to the field of environmental chemistry, as seen in her 2025 open-access article on assessing potentially toxic elements in edible fish from Bangladesh’s coastal islands—emphasizing public health risk analysis, environmental toxicology, and food safety. Her multidisciplinary approach highlights a transition from industrial and polymer-based research to pressing ecological and health-related chemical studies, demonstrating her adaptability and continued relevance in contemporary scientific inquiry with real-world societal impact.

Publication Top Notes

📘 “Surface modification of polycarbonate films with 2-hydroxyethylmethacrylate (HEMA) and N-vinyl pyrrolidone (NVP) monomers by radiation techniques” – Published in Journal in Engineering (Elsevier, UK), Volume 22, March 2024 | 📅 Year: 2024

📗 “Assessing potentially toxic elements in edible fish: A health risk analysis from Coastal Islands in Bangladesh” – Published in Environmental Chemistry and Ecotoxicology (Open Access), 2025 | 📅 Year: 2025

Limin Gu | Chemical Engineering | Best Researcher Award

Assist. Prof. Dr. Limin Gu | Chemical Engineering | Best Researcher Award

Assist. Prof. Dr. Limin Gu, Hebei University of Science and Technology, China

🔬 Assist. Prof. Dr. Limin Gu is an expert in 🔥 flame retardant materials and serves at Hebei University of Science & Technology. She holds a Doctor of Engineering in Materials Science from Beijing Institute of Technology. With over 20 publications, a scholarly monograph, and 10+ patents, her work focuses on bio-based, halogen-free flame retardants, waterborne polyurethanes, and material safety. She is an active member of the Chemical Safety & Verification Center and frequently uses GC-MS, TGA, TG-IR in her research. Her innovations contribute significantly to chemical safety, sustainability, and polymer engineering. 📚🧪🛡️

Publication Profile

Scopus

🎓 Educational Background

Assist. Prof. Dr. Limin Gu has a strong academic foundation in Materials Science and Engineering. She earned her Doctorate in Engineering in June 2016 from the prestigious Beijing Institute of Technology 🏛️. Prior to that, she completed both her Master’s degree in June 2006 and her Bachelor’s degree in June 2003 from Hebei University of Science & Technology 🎓. Her educational journey reflects a consistent commitment to scientific excellence, forming the basis for her impactful research in flame retardant materials 🔥 and chemical engineering innovations 🧪.

🔬 Research Focus

Assist. Prof. Dr. Limin Gu’s research primarily focuses on bio-based flame retardant materials, with an emphasis on polyurethanes derived from sustainable raw materials 🌱. Her work explores innovative preparation methods, halogen-free flame retardant technologies, and their thermal stability and applications in advanced polymer systems 🔥🧪. She integrates green chemistry principles to design materials that are both eco-friendly and high-performance ♻️. Additionally, her studies involve phosphorus–nitrogen synergistic systems, nanomaterials like graphene, and intumescent flame retardants. This positions her expertise within materials science, polymer engineering, and fire safety innovation 🏗️🧬.

Conclusion

Assist. Prof. Dr. Limin Gu presents a strong candidacy for the Best Researcher Award. Her profile is distinguished by academic rigor, innovative research on sustainable flame retardants, a significant patent portfolio, and impactful publications. Additionally, her contributions to chemical safety align with international frameworks, making her a noteworthy figure in materials science and chemical engineering.

Publication Top Notes

  • 📘 2025: Raw materials, preparation methods, flame retardant properties and applications of bio-based flame retardant polyurethanes: Research progress and challenges – European Polymer Journal. 🔥🧪

  • 📘 2015: Flame Retardancy and Thermal Decomposition of the Phosphorus-containing Waterborne Polyurethanes modified by Halogen-free Flame retardants – Industrial & Engineering Chemistry Research. 🧯🌿

  • 📘 2015: Halogen-Free Flame-Retardant Waterborne Polyurethane with a Novel cyclic structure of Phosphorus−Nitrogen Synergistic Flame Retardant – Journal of Applied Polymer Science. 🔄🧬

  • 📘 2016: Preparation and Performance Evaluation of Phosphorus-nitrogen Synergism Flame-retardant Water-borne Coatings for Cotton and Polyester fabrics – Journal of Polymer Research. 👕🧪

  • 📘 2020: Preparation and characterization of the halogen-free, smoke suppression, organic–inorganic hybrid flame-retardant expandable polystyrene materials – Journal of Applied Polymer Science. 🌫️♻️

  • 📘 2022: Synthesis and characterization of bio-based “three sources in one” intumescent flame retardant monomer and the intrinsic flame retardant waterborne polyurethane – Journal of Polymer Research. 🌿🔥

  • 📘 2023: Study on surface modification and properties of bio-based intumescent flame retardant – Journal of Thermal Analysis and Calorimetry. 🔬🌱

  • 📘 2020: Study on properties and application of pyrophosphate flame retardant microcapsules prepared from hemicellulose maleate – Cellulose. 🧫🌾

  • 📘 2019: Modification of hyperbranched hemicellulose polymer and its application in adsorbing acid dyes – Cellulose. 🎨🧪

Rahele Khosravi neissiani | Chemical Engineering | Best Researcher Award

Ms.Rahele Khosravi neissiani |Chemical Engineering | BestResearcherAward

Ms. Rahele Khosravi neissiani Sahand University of Technology , Iran

Ms. Rahele Khosravi Nessiani is a master’s student in the Department of Chemical Engineering at Sahand University of Technology in Tabriz, Iran. She earned her Bachelor of Applied Mathematics from Payam Noor University in 2016, where she conducted research on Goldbach’s conjecture. She completed her Master’s in Chemical Engineering with a focus on Biotechnology at Sahand University of Technology in 2019. Her research interests include biochemical engineering, bioprocess engineering, fermentation technology, wastewater treatment, and nanomagnetic materials.She has co-authored publications on topics such as the green synthesis of silver nanoparticles and their antibacterial properties, as well as the development of skin disease treatments based on exosome technology.

Publication Profile

Google scholar

Academic Background🎓

Rahele Khosravi Nesiani earned her MS in Chemical Engineering-Biotechnology from Sahand University of Technology, Tabriz, Iran in October 2020, with a GPA of 3/4. Her thesis was titled “Biosynthesis of silver nanoparticles using aqueous and oily extracts of clove and its biological effects on the bacteria causing tooth decay (Streptococcus mutans) and gastric ulcer (Helicobacter pylori),” under the supervision of Professor Hoda Jafarizadeh Malmiri. She completed her BS in Applied Mathematics from Payam Noor Dolatabad University, Esfahan, Iran in October 2013, with a GPA of 2.72/4. Her thesis was “A new solution to the Goldbach conjecture,” under Professor Hassam.

Professional Experience💼

Rahele Khosravi Nesiani is an experienced chemical engineer specializing in biotechnology, nanotechnology, and sustainable material development. She has been working as a Freelancer in Scientific Research & Product Development since 2019, where she designed natural solid perfumes, conducted research in green synthesis, and collaborated on interdisciplinary projects. She is currently leading a project as a Project Leader at Nano Company (2023 – Present), developing high-efficiency antibacterial and antiviral filters for medical applications using green synthesis techniques. Additionally, she worked as a Researcher at Sahand University of Technology (2018 – 2020), where she synthesized and analyzed nanoparticles for antibacterial and anti-inflammatory applications, publishing her findings in peer-reviewed journals.

Awards and Honors🏆

Gold Medal at the 2022 American Invention Exhibition for developing an Antibacterial Filter.Ranked among the Top 10 in Iran’s Ph.D. entrance exam.Authored several high-impact articles in international journals.

Research Focus🔬

Her research focuses on biotechnology, nanotechnology, and sustainable materials, particularly green synthesis of nanoparticles and their applications in environmental and health-related fields. She has worked on developing antibacterial and antiviral filters, silver nanoparticle biosynthesis, and innovative solutions for cancer treatment.

Publication Top Notes

  • Asadi, Z., Saki, M., Khosravi, R., Amin, M., Ghaemi, A., & Akrami, S. (2024). Green Synthesis of Silver Nanoparticles Using Extracts of Cocculus Pendulus: Morphology and Antibacterial Efficacy Against Common Nosocomial Pathogens. Indian Journal of Microbiology, 1-10.

  • Beihaghi, M., Sahebi, R., Beihaghi, M. R., Nessiani, R. K., Yarasmi, M. R., Gholamalizadeh, S., & Shojaei, M. (2023). Evaluation of rs10811661 polymorphism in CDKN2A/B in colon and gastric cancer. BMC Cancer, 23(1), 985.

  • Beihaghi, M., Sahebi, R., Beihaghi, M. R., Nessiani, R. K., & Ramian, M. (2023). Diagnosis of Colon Cancer Using LncRNA ROR Gene Biomarker. Bio Med, 15, 531.

  • Ahmadzadeh, K., & Khosravi Nesiani, R. (2023). An overview of soil and dust fixation. Water and Environmental Sustainability, 3(1), 31-35.

  • Khosravi Nesiani, R., Hoda Jafarizadeh Malmiri. (Under Review). Evaluation of four different green production methods for synthesizing silver nanoparticles using clove’s blue extract.

  • Khosravi Nesiani, R., Hoda Jafarizadeh Malmiri. (Under Review). Biosynthesis of silver nanoparticles using aqueous extracts of cloves and its antibacterial activity.

  • Khosravi Nesiani, R., Hoda Jafarizadeh Malmiri. (Under Review). Green synthesis of silver nanoparticles using clove extract and its potential application to control pathogenic bacteria Streptococcomutans and Helicobacter pylori.

  • Khosravi Nesiani, R., Pohl, P. (Under Review). Green synthesis of silver nanoparticles using clove extract and its potential application to control pathogenic bacteria and cancer.

  • Khosravi Nesiani, R. et al. (Under Review). Biosynthesis of selenium nanoparticles with Yarrow plant extract and its biological effects on Gram-negative and positive bacteria.

  • Khosravi Nesiani, R. et al. (Under Review). Using human antibody and pegylated nanodrugs to simulate the treatment of a brain tumor. Journal of Pharmaceutical Research.

Conclusion

Considering her expertise, contributions to high-impact research, and demonstrated leadership in developing innovative solutions, Rahele Khosravi Nesiani is a suitable candidate for the Best Researcher Award. However, enhancing collaboration and citation metrics could further solidify her standing.