Kye-Ryong Sin | Physical Chemistry | Excellence in Research Award

Excellence in Research Award

Kye-Ryong Sin — Kim Il Sung University, North Korea

Kye-Ryong Sin
Affiliation Kim Il Sung University
Country North Korea
Scopus ID 57195837232
Documents 19
Citations 91
h-index 6
Subject Area Physical Chemistry
Event Scientific World Research Awards

Kye-Ryong Sin is a researcher, whose published work spans physical and computational chemistry. His research includes electronic-structure calculations, supramolecular chemistry, and theoretical investigations of molecular systems.[1]

Abstract

The research record associated with Kye-Ryong Sin demonstrates sustained engagement with theoretical and computational approaches in chemistry. Published studies address molecular electronic structure, adsorption kinetics, supramolecular inclusion complexes, and chemically relevant theoretical models.[2]

Keywords

Physical Chemistry, Computational Chemistry, Density Functional Theory, Molecular Modeling, Supramolecular Chemistry, Adsorption Kinetics, Electronic Structure, Cucurbiturils, Quantum Chemistry.

Introduction

Physical chemistry uses quantitative models to explain molecular structure, reactivity, energetics, and interactions. Sin’s publications reflect this framework through computational studies of molecular systems and kinetic behavior, including work on adsorption-rate modeling and supramolecular host–guest chemistry.[3]

Research Profile

The research profile is characterized by computational interpretation of chemical phenomena. His studies employ methods including semiempirical calculations and density functional approaches to examine stability, electronic properties, molecular interactions, and inclusion behavior in chemically significant systems.[4]

Research Contributions

Reported contributions include theoretical analysis of fullerene-based systems, adsorption kinetics, manganoporphyrin chemistry, and cucurbituril inclusion complexes. These studies demonstrate the application of computational chemistry to molecular structure, reaction behavior, and intermolecular interactions.[5]

Publications

Selected publications include studies in Modern Chemistry, Chemical Physics Letters, Journal of Inorganic Biochemistry, Structural Chemistry, and Acta Crystallographica Section A. The documented works cover electronic structure, adsorption models, supramolecular chemistry, and theoretical approaches to structural and chemical problems.

Research Impact

The supplied research metrics record 19 documents, 91 citations, and an h-index of 6. These indicators provide a bibliometric view of the research record, while individual publications provide additional context concerning the subjects, methods, and scholarly venues represented in the work. [1]

Award Suitability

The Excellence in Research Award recognizes a research profile demonstrating sustained scholarly activity and relevance to a defined scientific field. Based on the documented publications, Sin’s work in physical and computational chemistry provides a suitable scholarly basis for consideration by the Scientific World Research Awards.

Conclusion

Kye-Ryong Sin’s documented research encompasses several areas of physical and computational chemistry, with particular attention to theoretical modeling and molecular interactions. The combination of published research, bibliometric indicators, and interdisciplinary computational methods supports recognition within a research-focused academic awards context.

References

  1. Elsevier. (n.d.). Scopus author details: Kye-Ryong Sin, Author ID 57195837232. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57195837232
  2. Sin, K.-R., Ko, S.-G., Jang, Y.-M., & Hong-Gol, O. (2017). PM7 Study on the Electronic Structure and Light Absorption of Some OPE-RE3N@C80 Dyads. Modern Chemistry, 5(5), 75–81.
    https://doi.org/10.11648/j.mc.20170505.11
  3. Hong, Y.-S., Kim, C.-J., Sin, K.-R., & Pak, J.-S. (2018). A new adsorption rate equation in batch system. Chemical Physics Letters, 706, 196–201.
    https://doi.org/10.1016/j.cplett.2018.06.010
  4. Sin, K.-R., Kim, C.-J., Ko, S.-G., Hwang, T.-M., Pak, K.-H., & Kim, M.-B. (2024). Quantum chemical study on inclusion of linalool into cucurbiturils. Structural Chemistry, 35, 413–420.
    https://doi.org/10.1007/s11224-023-02191-3
  5. Sin, K.-R., Ko, S.-G., Kim, C.-J., Maeng, T.-W., Choe, S.-J., & Ri, K.-R. (2021). Reduction of peroxynitrite by some manganoporphyrins of AEOL series: DFT approach with dispersion correction and NBO analysis. Journal of Inorganic Biochemistry, 214, 111299.
    https://doi.org/10.1016/j.jinorgbio.2020.111299

Izaz Ul Islam | Chemistry | Young Scientist Award

Mr. Izaz Ul Islam | Chemistry | Young Scientist Award

Doctoral Researcher | Henan University | China

Mr. Izaz Ul Islam is a researcher at Henan University, China, specializing in environmental materials and sustainable energy. His interests include hydrochar synthesis, wastewater treatment, heavy metal removal, and green hydrogen production using DFT insights. He has strong skills in material characterization, adsorption studies, and electrochemical analysis. With 13 Scopus-indexed publications, 94 citations, and an h-index of 6, he demonstrates growing academic impact. His work highlights innovative biomass-based solutions for environmental remediation and sustainable energy advancement.

 

Citation Metrics (Scopus)

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Citations

94

Documents

13

h-index

6

Citations

Documents

h-index

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