Ali Ghanadzdaeh Gilani | Physical Chemistry | Best Researcher Award

Best Researcher Award

Researcher Profile
Researcher Ali Ghanadzdaeh Gilani
Affiliation University of Guilan
Country Iran
Scopus ID 6603914479
Documents 179
Citations 3,709
h-index 34
Subject Area Physical Chemistry
Event International Chemistry Scientist Awards

Ali Ghanadzdaeh Gilani is a physical chemistry researcher affiliated with the University of Guilan, Iran. The supplied Scopus profile records 179 documents, 3,709 citations, and an h-index of 34, providing bibliometric indicators of sustained scholarly activity and research visibility. These metrics form contextual evidence for consideration within the Best Researcher Award at the International Chemistry Scientist Awards.[1]

Abstract

Ali Ghanadzdaeh Gilani is a physical chemistry researcher at the University of Guilan, Iran, whose supplied Scopus record indicates 179 documents, 3,709 citations, and an h-index of 34. These indicators provide a quantitative overview of sustained publication activity and scholarly visibility. The researcher’s profile is considered in relation to the Best Researcher Award presented through the International Chemistry Scientist Awards. The assessment emphasizes documented bibliometric information, research continuity, subject-area alignment, publication activity, and citation influence. The available data support recognition of an established research profile while maintaining a neutral distinction between bibliometric evidence and broader qualitative evaluation.[1][3]

Keywords

Physical Chemistry; Best Researcher Award; University of Guilan; Iran; Scopus; Bibliometrics; Citation Impact; Research Productivity; h-index; International Chemistry Scientist Awards.

Introduction

Physical chemistry integrates chemical principles with quantitative approaches to understand molecular, energetic, structural, and dynamic phenomena. Within this broad discipline, sustained publication and scholarly influence can be examined through recognized bibliometric databases. Ali Ghanadzdaeh Gilani’s supplied Scopus indicators provide a concise basis for describing research activity and considering eligibility for formal academic recognition.[1]

Research Profile

The supplied profile identifies Ali Ghanadzdaeh Gilani with the University of Guilan in Iran and places the researcher within Physical Chemistry. The reported Scopus author identifier is 6603914479. The profile contains 179 documents, 3,709 citations, and an h-index of 34. These figures describe measurable publication and citation activity in the supplied record.[1]

Research Contributions

The available information supports recognition of a substantial body of scholarly output within Physical Chemistry, represented by 179 indexed documents. Citation accumulation provides an additional indicator of research visibility and scholarly use. However, specific thematic contributions, experimental findings, collaborations, and methodological advances require examination of individual publications before detailed qualitative conclusions can be established.[2]

Publications

The supplied Scopus record reports 179 documents associated with the researcher identifier 6603914479. This publication count indicates an extensive indexed research output, although the provided dataset does not include individual article titles, journals, publication years, authorship positions, or article-level citation counts. Detailed publication assessment should therefore rely on the underlying indexed records and primary publications.[1]

Research Impact

The reported 3,709 citations and h-index of 34 provide quantitative measures of scholarly impact within the supplied Scopus record. Citation indicators can help contextualize research visibility, but they should be interpreted alongside field, publication age, authorship, collaboration patterns, and research quality. Accordingly, these values constitute supporting evidence rather than a complete assessment of scientific impact.[1]

Award Suitability

The supplied bibliometric profile is aligned with the general purpose of a Best Researcher Award because it demonstrates sustained indexed publication activity and measurable citation visibility within Physical Chemistry. The 179 documents, 3,709 citations, and h-index of 34 provide objective indicators for consideration. Final award suitability should additionally incorporate peer review, originality, research quality, and verified supporting documentation.

Conclusion

Ali Ghanadzdaeh Gilani’s supplied Scopus profile presents an established research record associated with the University of Guilan and Physical Chemistry. The reported publication, citation, and h-index indicators demonstrate sustained scholarly activity and visibility. These quantitative measures provide relevant supporting evidence for consideration for the Best Researcher Award, subject to independent verification and broader academic evaluation.[4]

References

  1. Elsevier. (n.d.). Scopus author details: Ali Ghanadzdaeh Gilani, Author ID 6603914479. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=6603914479
  2. Assadian, E., Zarei, M. H., Gilani, A. G., Farshin, M., & Degampanah, H. (n.d.). Toxicity of copper oxide (CuO) nanoparticles on human blood lymphocytes: Assadian et al..
    https://www.researchgate.net/publication/320594208
  3. Tajalli, H., Gilani, A. G., Zakerhamidi, M. S., & Tajalli, P. (n.d.). The photophysical properties of Nile red and Nile blue in ordered anisotropic media.
    https://www.sciencedirect.com/science/article/abs/pii/S0143720807002094
  4. Tajalli, H., Gilani, A. G., Zakerhamidi, M. S., & Moghadam, M. (n.d.). Effects of surfactants on the molecular aggregation of rhodamine dyes in aqueous solutions.
    https://www.sciencedirect.com/science/article/abs/pii/S1386142508005088

Konstantin Bogolitsyn | Physical Chemistry | Best Researcher Award

Prof. Konstantin Bogolitsyn | Physical Chemistry | Best Researcher Award

Prof. Konstantin Bogolitsyn | Northern (Arctic) Federal University | Russia

Prof. Konstantin Bogolitsyn is a distinguished Russian chemist, science organizer, and academic leader, widely recognized for his pioneering contributions to the chemistry of plant biopolymers and environmental safety. A Doctor of Chemical Sciences (1987), Professor (1988), and Honored Scientist of the Russian Federation (1999), he has played a key role in advancing both theoretical and applied chemistry, particularly through the foundation of the scientific school Physical Chemistry of Plant Polymers in Arkhangelsk. Over his career, he has served in numerous influential positions, including Director of the Institute of Chemistry and Chemical Technology of Wood, Scientific Director at the Institute of Environmental Problems of the North, and Vice-Rector for Research at NArFU, while also contributing to national and international scientific councils and editorial boards. His research achievements include the development of thermodynamic models of lignocarbohydrate matrices, modern oxidative and organosolvent delignification methods, supercritical fluid technologies, and analytical approaches to industrial wastewater treatment. He has supervised more than 40 doctoral and candidate dissertations, led over 30 major research projects, and contributed to more than 800 publications, including 11 monographs, 35 textbooks, and over 40 patents. With 996 citations across 744 documents and an h-index of 16, his work demonstrates lasting scientific influence. He is the recipient of numerous honors, including the Order of (2004), Vernadsky Medal (2014), “Professor of the Year” (2018), the Heritage of the North Award (2020), and the State Mentoring Award (2021), reflecting his enduring impact as both a researcher and mentor.

Profile:  Scopus

Featured Publications

  • Effects of the acidity of the medium on the structure of Nile Red. (2025). Russian Journal of Physical Chemistry A.

  • Electrophysical properties of heartwood and sapwood of Scots pine. (2025). Journal of the Indian Academy of Wood Science.

  • Physicochemical aspects of hydrogel preparation from algal cellulose. (2025). International Journal of Biological Macromolecules.

  • Evaluation of the bioactive potential of four Arctic brown algae. (2025). Chemistry of Natural Compounds.

  • Plant polymers and their sorption activity to radium ions. (2025). Turczaninowia. (Open access).

 

Caiyan Tian | Physical Chemistry | Best Researcher Award

Dr. Caiyan Tian | Physical Chemistry | Best Researcher Award

Dr. Caiyan Tian | Leibniz Institute for Analytical Sciences – ISAS – Registered Association | Germany

Dr. Caiyan Tian is a Research Associate and Ph.D. candidate in Biochemical and Chemical Engineering at the Leibniz Institute for Analytical Sciences (ISAS) and Technische Universität Dortmund, Germany, with research interests focused on ambient mass spectrometry, soft ionization, and plasma characterization. She holds a B.Sc. in Life Science from Tianshui Normal University (2014) and an M.Sc. in Biochemical and Molecular Biology from Sichuan University (2017), followed by professional experience in project management at Sichuan Kelun Pharmaceutical Co., Ltd. (2018–2020). Since 2020, she has been actively engaged in advanced plasma science research, contributing as a key participant in the Horizon 2020 project “Twinning in Atmospheric Plasma Science and Applications . Her scholarly record includes nine peer-reviewed publications in high-impact journals such as Spectrochimica Acta Part B and Analytical and Bioanalytical Chemistry, addressing fundamental mechanisms of soft ionization in flexible micro-tube plasmas, optical diagnostics, and ionization of semi-fluorinated compounds under controlled conditions. She is also a co-inventor on a German patent  for gas-phase ionization using plasma discharge, demonstrating her innovation in translating fundamental findings into practical technologies. With 18 citations across 9 documents and an h-index of 3, her growing impact reflects both the novelty and relevance of her research. Looking forward, her expertise in soft ionization mechanisms and plasma-based ionization sources is expected to significantly advance analytical sciences and expand applications in environmental, biomedical, and pharmaceutical analysis.

Profile:  Scopus | Orcid

Featured Publications

  • Tian, C., Speicher, L., Xue, D., Moreno-González, D., Marggraf, U., Ahlmann, N., Brandt, S., Franzke, J., & Niu, G. (2022). Ionization of semi-fluorinated n-alkanes in controlled atmosphere using flexible micro-tube plasma (FμTP) ionization source with square- and sine-wave voltage. Talanta, 252, 123662.

    Tian, C., Ahlmann, N., Brandt, S., Franzke, J., & Niu, G. (2021). Optical characterization of miniature flexible micro-tube plasma (FμTP) ionization source: A dielectric guided discharge. Spectrochimica Acta Part B: Atomic Spectroscopy, 180, 106222.

    Tian, C., Yin, J., Zhao, Z., Zhang, Y., & Duan, Y. (2017). Rapid identification and desorption mechanisms of nitrogen-based explosives by ambient micro-fabricated glow discharge plasma desorption/ionization (MFGDP) mass spectrometry. Talanta, 165, 502–509.

    Tian, C., Ding, X., Yin, J., & Duan, Y. (2016). Preliminary study of microfabricated glow discharge plasma for mass spectrometry imaging. Chinese Journal of Analytical Chemistry, 44(1), 92–98.

 

 

 

Jie Hou | Physical Chemistry | Best Researcher Award

Assoc. Prof. Dr. Jie Hou | Physical Chemistry
| Best Researcher Award

Assoc. Prof. Dr. Jie Hou | Anhui University | China

Assoc. Prof. Dr. Jie Hou is an Associate Professor at the, Anhui University, China, whose research focuses on advanced surface science, spintronics, and low-temperature scanning tunneling microscopy and spectroscopy (LT-STM/STS). He earned his PhD in Physical Chemistry at Tohoku University, Japan, under the supervision of Prof. Tadahiro Komeda, following an MS from Zhejiang Normal University and a BS from Harbin Normal University in China. After completing his doctorate, Dr. Hou held prestigious postdoctoral appointments in Japan, Spain, and Germany, working with internationally renowned experts such as Prof. Lucia VITALI and Prof. Richard BERNDT, further advancing his expertise in spin state manipulation, quantum materials, and molecular electronics. His research interests include the detection and control of single spin states, the interplay of Cooper pairs, Yu-Shiba-Rusinov bound states, and Kondo screening, as well as the design of ultra-high-vacuum instrumentation. Dr. Hou has published 16 peer-reviewed articles in high-impact journals such as Applied Surface Science, Journal of Materials Chemistry C, Communications Chemistry, and Advanced Functional Materials, contributing to the fields of spin dynamics, superconductivity, and nanomaterials. He holds a patent on functionalized mesoporous cerium oxide, reflecting his applied research outcomes. His academic contributions are recognized with honors such as the Young Researcher’s Award at the ISSS-8 Symposium in Japan and selection as a candidate for the “One Hundred Talents Project” in Anhui Province, China. With 180 citations across 175 documents, an h-index of 4, and a growing international profile, Dr. Hou continues to advance frontiers in nanoscale physics through innovative research, global collaborations, and teaching excellence.

Profile: Scopus

Featured Publication

  • Hou, J., Xu, N., Khan, M. Z. H., Shan, L., & Komeda, T. (2025). Revealing hydrogen bonding in ordered dopamine films through inelastic tunnelling spectroscopy. Applied Surface Science, 694, 162852.

    Hou, J., Xu, N., Khan, M. Z. H., & Komeda, T. (2023). Spin state manipulation of spiropyran (SP) and Dy complex with SP ligand molecules on Au(111) by scanning tunneling microscopy. Communications Chemistry, 6(1), 37.

    Hou, J., Vázquez, H., & Komeda, T. (2020). Enhanced magnetic spin-spin interactions observed between porphyrazine-derivatives on Au(111). Journal of Materials Chemistry C, 8(46), 16513–16519.

    Hou, J., & Komeda, T. (2018). Porphyrazine film on Au(111). Beilstein Journal of Nanotechnology, 9, 2051–2057.

    Hou, J., Liu, Z., Zhang, Z., Wang, Y., & Viti, L. (2022). Ultrabroadband photodetector based on ferromagnetic van der Waals heterodiode. Advanced Functional Materials, 32(48), 2207561.