Gwang-Chol Jong | Computational Chemistry | Innovative Research Award

Innovative Research Award

Gwang-Chol Jong — University of Sciences, North Korea

Gwang-Chol Jong
Affiliation University of Sciences
Country North Korea
Scopus ID 57212610153
Documents 2
Citations 2
h-index 1
Subject Area Computational Chemistry
Event Scientific World Research Awards

Gwang-Chol Jong is a researcher whose indexed scholarly work is associated with computational and theoretical chemistry. His published research includes computational investigation of stable water-cluster structures using quantum-chemical methods and COSMO-based density calculations. [1]

Abstract

This academic recognition profile presents Gwang-Chol Jong in the context of computational chemistry and theoretical molecular research. His documented work includes computational classification of small water clusters, investigation of stable molecular structures, and application of quantum-chemical and COSMO-related calculations. [1]

Keywords

Computational Chemistry; Theoretical Chemistry; Water Clusters; COSMO; Quantum Chemistry; Molecular Structure; Density Calculations; Molecular Modeling; Hydrogen Bonding; Chemical Computation.

Introduction

Gwang-Chol Jong is a researcher affiliated with the University of Sciences, North Korea, whose documented scholarly work is focused on computational chemistry and theoretical molecular research. His research includes computational investigations of small water clusters and their molecular structures using quantum-chemical approaches. [2]

Research Profile

The publication record identifies Gwang-Chol Jong as a co-author of research concerning small water clusters and computational characterization of their structures. One indexed article reports the use of Hartree–Fock and density-functional theory calculations to investigate stable structures, together with COSMO-related calculations for density comparisons. [1]

Research Contributions

A documented contribution associated with Jong is the proposed notation framework for classifying small water clusters and the computational comparison of COSMO densities for stable cluster structures.The study also examined cluster structures using computational chemistry methods and discussed possible structural relationships relevant to liquid water.  [1]

Publications

A documented publication by Gwang-Chol Jong and co-authors is “Classification of small water clusters (SWCs) by (K, J, nO0)-X notation and study on conductive-like screening model (COSMO) densities of SWCs,” published in Computational and Theoretical Chemistry, volume 1209, article 113613. Record also identifies Jong among the authors of a 2025 article concerning polyhedral small water clusters [1]

Research Impact

The supplied researcher metrics list 2 documents, 2 citations, and an h-index of one. Computational chemistry research more broadly continues to employ molecular docking, quantum chemistry, molecular dynamics, and related computational techniques to investigate molecular interactions and chemical systems. [1]

Award Suitability

For the Scientific World Research Awards, the documented research profile is relevant to an Innovative Research Award category because it demonstrates application of computational methods to a defined chemical-structure problem. The reported work combines molecular classification, quantum-chemical calculations, and COSMO-based analysis within the study of small water clusters.

Conclusion

Gwang-Chol Jong’s documented scholarly profile is associated with computational and theoretical chemistry, with research concerning small water clusters and computational characterization of molecular structures. The identified publication provides a concrete example of applying quantum-chemical and COSMO approaches to molecular systems. [2]

References

  1. Elsevier. (n.d.). Scopus author details: Jong, Gwangchol, Author ID 57212610153. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57212610153
  2. Jong, G.-C., Pak, G.-I., Pak, N.-J., Jong, R.-J., & Jon, Y. (2022).Classification of small water clusters (SWCs) by (K, J, nO0)-X notation and study on conductive-like screening model (COSMO) densities of SWCs
    .https://doi.org/10.1016/j.comptc.2022.113613
  3. Jong, G.-C., Pak, G.-I., Jo, M.-I., Ji, R.-H., Hyon, D.-H., & Gong, R.-H. (2025).Classification of polyhedral small water clusters by {N,N,N,N} notations and study on numbers of surface hydrogen bonds and surface hydrogen-bonded rings.
    https://doi.org/10.1016/j.jics.2025.102166
  4. Scientific World Research Awards.
    https://scientificworld.net

Hongqiang Wang | Chemistry | Innovative Research Award

Innovative Research Award

Hongqiang Wang
Affiliation Beihua University
Country China
Scopus ID 57189511669
Documents 35
Citations 562
h-index 16
Subject Area Chemistry
Event Scientific World Research Awards
ORCID 0000-0001-6882-0476

Hongqiang Wang — Beihua University, China

Hongqiang Wang is a chemistry researcher, whose documented research includes quantum chemistry, and nonlinear optics. His ORCID record identifies his Faculty of Chemistry appointment and records research works spanning computational and molecular chemistry. [1]

Abstract

This academic recognition profile presents the research record with particular emphasis on nonlinear optical materials, molecular electronic structure, and carborane chemistry. The available scholarly record documents sustained publication activity and multiple studies using theoretical and computational approaches. [2]

Keywords

Quantum Chemistry; Nonlinear Optics; Carborane; Organometallic Complex; Exciton Dynamics; Density Functional Theory; Molecular Switching; Hyperpolarizability.

Introduction

Wang’s research profile is centered on understanding molecular structure–property relationships relevant to optical and electronic phenomena. His documented publications examines nonlinear optical responses, donor–acceptor architectures, molecular switches, metal complexes, and carborane-containing systems. [3]

Research Profile

The ORCID record lists Beihua University employment from 2020 to the present and doctoral education at Northeast Normal University from 2015 to 2020. The profile identifies quantum chemistry, nonlinear optics, carborane, organometallic complexes, and exciton dynamics among his research keywords. [1]

Research Contributions

His documented work includes investigations of molecular architectures, hyperpolarizability, photoswitching, and nonlinear optical behavior. Recent studies include donor–acceptor Stenhouse adducts and carborane-based systems, illustrating continued interest in structure-dependent optical response. [4]

Publications

The supplied ORCID record lists 36 works, including publications in Chemistry – A European Journal, Dyes and Pigments, Theoretical Chemistry Accounts, Organic Electronics, and The Journal of Physical Chemistry C. Representative studies address nonlinear optical responses, molecular switching, donor–acceptor chemistry, and metal-containing molecular architectures. [2]

Research Impact

The supplied researcher metrics report 35 documents, 562 citations, and an h-index of 16. These figures provide a bibliometric snapshot associated with the supplied Scopus profile and should be interpreted with reference to the database’s indexing and update practices. [5]

Award Suitability

The documented research publication record provide a basis for consideration under an Innovative Research Award in chemistry. His work connects computational chemistry with nonlinear optical phenomena and molecular design, while the publication record demonstrates research activity across several related areas. [3]

Conclusion

Hongqiang Wang’s documented academic profile reflects sustained research in chemistry, particularly quantum chemical studies and nonlinear optical systems. The combination of research themes, peer-reviewed publications, and reported bibliometric indicators supports his presentation for academic recognition through the Scientific World Research Awards. [1]

References

  1. ORCID. (2026). Hongqiang Wang: ORCID record 0000-0001-6882-0476. ORCID.
    https://orcid.org/0000-0001-6882-0476
  2. Elsevier. (n.d.). Scopus author details: Hongqiang Wang, Author ID 57189511669. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57189511669
  3. Kang, H., Ye, J., Wang, H., Zhang, Y., & Qiu, Y. (2021). DFT study of effect of substituents on second-order NLO response of novel BODIPY dyes. Theoretical Chemistry Accounts.
    https://doi.org/10.1007/s00214-021-02758-5
  4. Wen, J.-Q., Tao, R., Li, J.-H., Miao, Y., Zhang, J.-Y., Qiu, Y.-Q., Wang, H.-Q., & Liu, C.-G. (2026). Tuning Second-Order Nonlinear Optical Properties via Electronic Interaction Engineering. Chemistry – A European Journal.
    https://doi.org/10.1002/chem.71362
  5. Zhang, Y., Wang, H.-Q., Zhao, Y.-Y., & Qiu, Y.-Q. (2020). Novel cyclic and linearizing cyclic Pd(II) nanohoop-based coordination complexes achieving nonlinear optical activity transparency trade-off optimization. Organic Electronics.
    https://doi.org/10.1016/j.orgel.2019.105564

Tomoya Nakago | Chemistry | Young Scientist Award

 

Young Scientist Award

Tomoya Nakago — Kindai University, Japan

Tomoya Nakago
Affiliation Kindai University
Country Japan
Scopus ID 59009315100
Documents 3
Citations 2
h-index 1
Subject Area Chemistry
Event Name Scientific World Research Awards
ORCID 0009-0002-0781-830X

Tomoya Nakago is a researcher affiliated with Kindai University in Japan, with research activities situated within chemistry, materials science, polymer science, and related interdisciplinary areas. The available ORCID record identifies Kindai University as an affiliation from April 2023 to the present and records Nakago as a graduate student in the Faculty of Engineering.  [1]

Abstract

Tomoya Nakago’s documented research profile reflects early-career scientific activity at the intersection of chemistry, polymer materials, surface engineering, and biomedical materials research. The ORCID record lists two validated works, including a 2025 Journal of Applied Polymer Science article concerning polyethylene surface modification using a soil fungus with dichlorophenol-degrading ability.  [2]

Keywords

Tomoya Nakago; Young Scientist Award; Chemistry; Polymer Science; Materials Chemistry; Surface Modification; Polyethylene; Copolymers; Biomaterials; Fibrinolytic Activity; Kindai University; Scientific World Research Awards. These terms represent the principal research themes and bibliographic identifiers associated with the documented scholarly profile.

Introduction

Young Scientist recognition commonly emphasizes the development of research capability, publication activity, methodological competence, and potential for continued scholarly contribution. Nakago’s available record indicates sustained affiliation with Kindai University since 2023 and supported by peer-reviewed publications. [1]

Research Profile

Nakago’s research profile is associated with Kindai University, where the ORCID record identifies a graduate student appointment within the Faculty of Engineering. The research portfolio includes polymer surface modification and the preparation of functional zwitterionic copolymers. These subjects require integration of synthetic chemistry, materials characterization, surface analysis, and interpretation of application-oriented properties.[1]

Research Contributions

One documented contribution investigates surface modification of polyethylene using a soil fungus possessing dichlorophenol-degrading ability and evaluates resulting surface characteristics. This work connects biological functionality with polymer surface science and provides an applied perspective on modifying material interfaces.  [3]

Publications

The ORCID record identifies two validated journal articles associated with Tomoya Nakago. The 2025 Journal of Applied Polymer Science article, titled “Surface Modification of Polyethylene Using Soil Fungus With Dichlorophenol-Degrading Ability and Analysis of its Surface Characteristics. These publications provide verifiable evidence of research activity across polymer and materials chemistry. [3]

Research Impact

The supplied Scopus information records three documents, two citations, and an h-index of one for the researcher. These metrics represent a developing bibliometric profile and should be interpreted in the context of career stage, publication chronology, field-specific citation patterns. The Continued publication and citation development may provide additional evidence of longer-term research influence. [2]

Award Suitability

The available evidence supports consideration of Tomoya Nakago for a Young Scientist Award on the basis of documented early-career research activity and peer-reviewed scholarly output. The ORCID record provides an identifiable researcher profile, institutional affiliation, and validated publication information. The publications demonstrate participation in collaborative research addressing contemporary problems in polymer and materials chemistry. [1]

Conclusion

Tomoya Nakago is an early-career researcher at Kindai University whose documented scholarly activities focus on chemistry, polymer science, and functional materials. The available ORCID information confirms institutional affiliation and two validated journal works, while the supplied Scopus information records three documents, two citations, and an h-index. [3]

References

  1. ORCID. (2026). Tomoya Nakago — ORCID record 0009-0002-0781-830X. ORCID.https://orcid.org/0009-0002-0781-830X
  2. Nakago, T., Takahashi, M., Oyama, Y., Ogawa, T., & Shiraishi, K. (2025). Surface Modification of Polyethylene Using Soil Fungus With Dichlorophenol-Degrading Ability and Analysis of its Surface Characteristics. Journal of Applied Polymer Science. https://doi.org/10.1002/app.56621
  3. Nakago, T., Oki, Y., Nousou, T., Ogawa, T., & Shiraishi, K. (2024). Preparation of zwitterionic random and block poly(N-α-acrylamide-l-lysine-co-2-methacryloyloxyethyl phosphorylcholine) copolymers and their effect on fibrinolytic activity. Materials Advances. https://doi.org/10.1039/D4MA00267A
  4. Elsevier. (n.d.). Scopus Author Profile: Tomoya Nakago, Author ID 59009315100. Scopus.https://www.scopus.com/pages/authors/59009315100
  5. Scientific World Research Awards. (n.d.). Scientific World Research Awards.https://scientificworld.net

Cheng Zhang | Chemistry | Research Excellence Award

Prof. Cheng Zhang | Chemistry | Research Excellence Award

Professor | Suzhou University of Science and Technology | China

Prof. Cheng Zhang is a highly cited materials scientist recognized for his impactful contributions to memristor devices, artificial synapses, neuromorphic computing, and organic functional materials, with strong extensions into energy storage, catalysis, and environmental materials. His research interests center on organic–inorganic hybrid perovskites, MXene-based and framework-based memristors, metal–organic and hydrogen-bonded organic frameworks, biomass-derived carbon, and advanced electrode materials for lithium-ion batteries, supercapacitors, gas sensors, and solar cells. He possesses strong research skills in functional material design, device fabrication, thin-film deposition, electrochemical analysis, and structure–performance correlation, enabling translation from materials engineering to device-level applications. Prof. Zhang’s excellence is reflected in his numerous high-impact publications in Advanced Materials, Advanced Functional Materials, Nano Energy, and Chemical Engineering Journal, along with multiple academic recognitions for research excellence. According to Google Scholar, he has 2,570 citations, 20 documents, and an h-index of 30, highlighting his sustained global influence and leadership in next-generation electronic and energy materials research.

 

Citation Metrics (Google Scholar)

2570
2000
1500
1000
500
0

Citations

2570

Documents

20

h-index

30

Citations

Documents

h-index

View Google Scholar Profile
    View ORCID Profile

Featured Publications