Ali Maghari | Physical Chemistry | Editorial Board Member

Editorial Board Member

Ali Maghari · University of Tehran · Iran

Ali Maghari
Affiliation University of Tehran
Country Iran
Scopus ID 55887953200
Documents 85
Citations 914
h-index 17
Subject Area Physical Chemistry
Event International Chemistry Scientist Awards
ORCID 0000-0002-7386-477X

Ali Maghari is a researcher affiliated with the University of Tehran, Iran, whose stated subject area is physical chemistry. His academic profile is associated with research publications and citation indicators indexed by Scopus. The available profile information records 85 documents, 914 citations, and an h-index of 17. These bibliometric figures provide quantitative indicators of research output and citation activity; they should be interpreted in the context of publication dates, subject-area citation patterns, and the coverage of the indexing database. [1]

Abstract

This academic profile describes Ali Maghari, an Iranian researcher affiliated with the University of Tehran and associated with the subject area of physical chemistry. The supplied Scopus profile information lists 85 documents, 914 citations, and an h-index of 17. His ORCID record provides a persistent researcher identifier for distinguishing his scholarly identity. The article outlines the significance and limitations of these indicators, discusses the general scope of physical chemistry, and summarizes the relevance of documented academic activity to editorial recognition and chemistry awards. Detailed claims about individual research findings require confirmation through primary publications and verified institutional records. [1] [2]

Keywords

Ali Maghari; physical chemistry; University of Tehran; Iran; chemical sciences; research publications; citation analysis; Scopus author profile; ORCID; editorial board member; International Chemistry Scientist Awards; research assessment.

Introduction

Physical chemistry examines the physical principles underlying chemical systems, including molecular structure, chemical kinetics, thermodynamics, spectroscopy, reaction mechanisms, and the properties of matter. It draws on experimental measurements, mathematical models, and theoretical approaches to explain chemical behaviour across different scales. The field contributes to fundamental chemical science and supports research in materials, energy, catalysis, and related interdisciplinary areas. [1] [2]

Research Profile

The supplied academic information identifies Ali Maghari with the University of Tehran in Iran and lists physical chemistry as his subject area. His Scopus author identifier is 55887953200, and his ORCID identifier is 0000-0002-7386-477X. These identifiers provide routes to the corresponding external profiles and can help readers locate relevant records. The accuracy and completeness of any profile should be checked against the current information displayed by the respective services. [1] [2]

Research Contributions

The specific scientific contributions of Ali Maghari should be established from his verified publications, abstracts, methods, and reported findings. As a result, this article does not assign particular discoveries, experimental achievements, or research specializations beyond the supplied subject-area classification without supporting publication-level evidence.[1]

Publications

The supplied Scopus record indicates 85 documents associated with the author profile. This figure represents the document count provided for this article and does not independently establish the precise composition, publication dates, authorship order, or quality of the associated works. Readers seeking a complete publication list should consult the linked Scopus profile and verify individual records using article titles, journal information, publication years, and DOI identifiers where available. [1]

Research Impact

The supplied bibliometric indicators for Ali Maghari are 914 citations and an h-index of 17, alongside a reported document count of 85. Citation totals indicate that indexed publications have been cited by subsequent works, while the h-index combines publication output and citation thresholds into a single measure. These indicators can help describe patterns of scholarly visibility, but they cannot fully represent originality, methodological quality, practical importance, or societal benefit. [1]

Award Suitability

The supplied information associates Ali Maghari with editorial board recognition and the International Chemistry Scientist Awards. His stated affiliation, research subject area, and bibliometric profile provide relevant background for an academic recognition page. However, the precise editorial appointment, selection process, award category, and official award status should be confirmed through authoritative event or institutional documentation before being presented as independently verified facts. [2]

Conclusion

Ali Maghari is identified in the supplied information as a physical chemistry researcher affiliated with the University of Tehran, Iran. His provided Scopus profile figures comprise 85 documents, 914 citations, and an h-index of 17, while his ORCID identifier offers a persistent means of locating his researcher record. These details establish a concise bibliographic overview but do not replace an examination of individual publications, verified research contributions, or documented editorial and award appointments.[2]

References

  1. Elsevier. (n.d.). Scopus author details: Ali Maghari, Author ID 55887953200. Scopus. Author-profile metrics and bibliographic information should be confirmed against the current record.
    https://www.scopus.com/authid/detail.uri?authorId=55887953200
  2. ORCID. (n.d.). ORCID profile of Ali Maghari. ORCID Registry. Persistent researcher identifier and associated profile information.
    https://orcid.org/0000-0002-7386-477X

Maziar Noei | Physical Chemistry | Physical Chemistry Award

Physical Chemistry Award

Maziar Noei – Islamic Azad University, Iran

Maziar Noei
Affiliation Islamic Azad University
Country Iran
Scopus ID 37018557200
Documents 73
Citations 1,880
h-index 23
Subject Area Physical Chemistry
Event International Chemistry Scientist Awards
ORCID 0000-0001-8666-0824

Maziar Noei is a researcher affiliated with Islamic Azad University, Iran, whose academic profile is associated with physical chemistry. His scholarly record includes 73 documents, 1,880 citations, and an h-index of 23 according to the supplied Scopus profile information. His research profile is considered in the context of the International Chemistry Scientist Awards.

Abstract

Maziar Noei is affiliated with Islamic Azad University in Iran and is identified with the subject area of physical chemistry. The supplied bibliometric profile records 73 scholarly documents, 1,880 citations, and an h-index of 23. These indicators provide a quantitative overview of publication activity and citation visibility and can be considered alongside the scientific content, originality, methodological quality, and relevance of individual publications when assessing research recognition. [1]

Keywords

Physical Chemistry, Chemistry Research, Chemical Sciences, Molecular Science, Materials Chemistry, Physicochemical Processes, Scientific Publications, Research Impact, Citation Analysis, International Chemistry Scientist Awards.

Introduction

Physical chemistry applies principles of chemistry and physics to understand the properties, structures, energetics, dynamics, and transformations of chemical systems. The discipline encompasses areas such as thermodynamics, kinetics, spectroscopy, electrochemistry, quantum chemistry, molecular interactions, and the study of materials at different scales. Researchers working in this field commonly combine experimental measurements with theoretical or computational approaches to explain chemical phenomena.[2]

Research Profile

The supplied research profile places Maziar Noei within the field of physical chemistry and identifies Islamic Azad University as the institutional affiliation. The Scopus author identifier associated with the profile is 37018557200. The recorded publication and citation indicators comprise 73 documents, 1,880 citations, and an h-index of 23. [1]

Research Contributions

A physical chemistry research profile may contribute to the broader chemical sciences through investigations of molecular and material properties, reaction behavior, thermodynamic and kinetic processes, spectroscopic characterization, and related physicochemical phenomena. Assessment of individual contributions requires examination of the relevant publications, methods, datasets, and findings rather than reliance on bibliometric indicators alone.[2]

Publications

The supplied Scopus profile records 73 documents for Maziar Noei. Scopus author profiles provide bibliographic and citation information for indexed publications and can be used as a starting point for examining publication history, citation performance, and research themes. [1]

Research Impact

Research impact can be evaluated using multiple complementary dimensions, including scholarly citations, publication quality, collaboration, methodological contribution, disciplinary relevance, and the extent to which findings are used or developed by subsequent research. The reported 1,880 citations and h-index of 23 indicate a measurable citation presence in the indexed literature. [1]

Award Suitability

The available information provides a basis for considering Maziar Noei for recognition associated with physical chemistry. The profile identifies a relevant disciplinary area, an academic institutional affiliation, and a documented Scopus record comprising 73 documents, 1,880 citations, and an h-index of 23. [1]

Conclusion

Maziar Noei, affiliated with Islamic Azad University, Iran, is identified in the supplied information as a physical chemistry researcher with 73 Scopus-indexed documents, 1,880 citations, and an h-index of 23. These indicators provide evidence of an established scholarly publication and citation record. [2] A comprehensive recognition assessment should combine these metrics with detailed examination of publication quality, originality, scientific contribution, and relevance to physical chemistry.

References

  1. Elsevier. (n.d.). Scopus author details: Maziar Noei, Author ID 37018557200. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=37018557200
  2. ORCID. (n.d.). ORCID profile of Maziar Noei. ORCID Registry.
    https://orcid.org/0000-0001-8666-0824

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

Dr. Arash Pakravesh | Physical Chemistry | Best Researcher Award

Dr. Arash Pakravesh | Physical Chemistry | Best Researcher Award

Senior Researcher | Energy and Thermodynamics Research Organization | Iran

Dr. Arash Pakravesh is a leading researcher in thermodynamics, specializing in the development and application of equations of state, with particular emphasis on the Statistical Associating Fluid Theory (SAFT). His work integrates theoretical modeling, computational simulations, and experimental validations to accurately describe the thermophysical properties of pure compounds and complex mixtures, including hydrogen and industrial solvents. By systematically evaluating and comparing models such as PρT-SAFT, PC-SAFT, CPA, and cubic equations of state, he advances the predictive capability of density, thermal expansion, isothermal compressibility, heat capacities, speed of sound, and vapor pressures in diverse chemical systems. His research significantly contributes to hydrogen technology, renewable energy applications, and industrial process optimization. With extensive publications in high-impact journals and active collaborations across more than 20 research groups, Dr. Pakravesh has established a strong international presence. His Google Scholar profile reports 78 citations, an h-index of 5, and an i10-index of 3, while Scopus shows 72 citations across 52 documents with an h-index of 4, highlighting his growing impact in the thermodynamics community. Beyond publications, he has contributed to patents, consultancy projects, and editorial boards, reinforcing his commitment to both academic advancement and industrial relevance. Dr. Pakravesh’s research combines rigorous scientific methodology with practical applications, positioning him as a key contributor to the development of advanced thermodynamic models and their implementation in chemical engineering and energy systems.

Profiles : Google Scholar | Scopus | Orcid 

Featured Publications : 

Pakravesh, A., Mohammadi, A. H., & Richon, D. (2025). A comparative evaluation of friction theory, free-volume theory, entropy scaling, and Helmholtz energy scaling viscosity models coupled with the PρT-SAFT equation of state for pure and binary mixtures of ethylene glycols and alkanolamines. International Journal of Thermophysics, 46, 98.

Pakravesh, A., Mohammadi, A. H., & Richon, D. (2025). Modeling of supercritical hydrogen thermodynamic properties using cubic and SAFT type equations of state. The Journal of Supercritical Fluids, 106588.

Pakravesh, A., Mohammadi, A. H., & Richon, D. (2025). Performance evaluation of PρT-SAFT, PρT-PC-SAFT, PC-SAFT, and CPA equations of state for predicting density, thermal expansion coefficient, isothermal compressibility, isobaric heat capacity, speed of sound, and saturated vapor pressure of three pure ethylene glycols and their mixtures. International Journal of Thermophysics, 46, 30.

Pakravesh, A., & Zarei, H. (2024). Thermodynamic modeling of pure, binary, and ternary mixtures of alkanolamines using three versions of SAFT equations of state. Journal of Chemical Engineering Data, 70(3), 1182–1194.

Pakravesh, A. (2025). From molecules to industry: The expanding role of SAFT equation of state in engineering science. Clareus Scientific Science and Engineering, 2, 01–03.

Kev Salikhov | Physical Chemistry | Best Researcher Award

Prof. Dr. Kev Salikhov
| Physical Chemistry
| Best Researcher Award

Prof. Dr. Kev Salikhov | Kazan Institute of Physics and Technology | Russia

Prof. Dr. Kev M. Salikhov, a distinguished physicist and full member of the Russian Academy of Sciences, is internationally recognized as one of the founders of spin chemistry and a pioneer in magnetic resonance research.  he graduated from Kazan State University and went on to make fundamental contributions to spin physics, quantum coherence, and the theory of chemical reactions. His groundbreaking theoretical work explained the influence of external magnetic fields on radical reactions and the magnetic isotope effect, laying the foundation for new scientific fields such as MARY spectroscopy and advanced EPR/NMR methodologies. He developed the theory of pulsed EPR techniques, spin echo modulation, phase relaxation, and selective excitation, as well as the widely applied PELDOR method for nanometric distance measurements between paramagnetic centers. His research extended to elucidating the primary stages of charge separation in photosynthesis, quantum beats in EPR spectra, and exchange interactions in paramagnets. With over 210 publications, more than 2,621 citations by 1,690 documents and an h-index of 26, Scopus Author ID: 7003735739. Prof. Salikhov’s influence spans theoretical physics, chemistry, quantum information, and nanometrology. As long-time director and now scientific director of the Kazan Institute of Physics and Technology, and founder of Applied Magnetic Resonance, he continues to shape international research in magnetic resonance and quantum science.

Profile:  Scopus | Google Scholar

Featured Publications

  • Salikhov, K. M., Molin, Y. N., Sagdeev, R. Z., & Buchachenko, A. L. (1984). Spin polarization and magnetic effects in radical reactions. Amsterdam: Elsevier.

  • Molin, J. N., Salikhov, K. M., & Zamaraev, K. I. (1980). Spin exchange: Principles and applications in chemistry and biology. Berlin: Springer-Verlag.

  • Milov, A. D., Salikhov, K. M., & Shirov, M. D. (1981). Application of ELDOR in electron-spin echo for paramagnetic center space distribution in solids. Fizika Tverdogo Tela, 23(4), 975–982.

  • Salikhov, K. M., Semenov, A. G., & Tsvetkov, Y. D. (1976). Electron spin echo and its applications. Novosibirsk: Nauka, Science.

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.