Ho Soon Min | Chemistry | Distinguished Scientist Award

Distinguished Scientist Award

Ho Soon Min is a chemistry researcher affiliated with INTI International University, Malaysia. His scholarly profile includes 371 documents, 3,123 citations, and an h-index of 30 according to the supplied Google Scholar profile information. His research profile is presented in connection with the International Research Awards and the Distinguished Scientist Award.

Ho Soon Min
Affiliation INTI International University
Country Malaysia
Google Scholar ID gegoUv0AAAAJ
Documents 371
Citations 3,123
h-index 30
Subject Area Chemistry
Event International Research Awards
ORCID 0000-0002-3697-5091

Abstract

Ho Soon Min is a chemistry researcher affiliated with INTI International University in Malaysia. The supplied scholarly profile identifies 371 documents, 3,123 citations, and an h-index of 30, providing quantitative indicators of research activity and citation visibility. His ORCID record provides a persistent identifier for distinguishing his scholarly contributions across research systems. The researcher’s academic profile is considered in relation to the Distinguished Scientist Award under the International Research Awards. This article summarizes the available profile information, research indicators, publication context, scholarly impact, and award-related relevance using publicly identifiable researcher-profile information and supplied academic records. [1] [2]

Keywords

Ho Soon Min; Chemistry; INTI International University; Distinguished Scientist Award; International Research Awards; Google Scholar; ORCID; scholarly publications; citation impact; research profile. [1]

Introduction

Academic recognition commonly considers evidence such as research output, scholarly influence, subject expertise, and identifiable research contributions. In this context, Ho Soon Min’s profile provides bibliometric information associated with chemistry research and an institutional affiliation in Malaysia. The supplied metrics offer a quantitative description of his scholarly activity. [1]

Research Profile

Ho Soon Min is identified with INTI International University and the subject area of Chemistry. The supplied Google Scholar profile records 371 documents, 3,123 citations, and an h-index of 30. These indicators describe publication volume and citation activity within the indexed scholarly record, although bibliometric values may change as databases are updated. [3]

Research Contributions

The available profile information places Ho Soon Min’s academic activity within Chemistry and indicates a substantial body of indexed scholarly documents. The document count provides one measure of research productivity, while citations and h-index provide additional bibliometric indicators that may be used to examine the visibility of published research. [1]

Publications

The supplied Google Scholar record reports 371 documents associated with Ho Soon Min. This figure represents the publication and scholarly-document count visible in the supplied profile and may include different types of indexed research outputs. A complete publication assessment would require examination of individual articles, journals, publication dates, authorship roles, and research topics. [5]

Research Impact

The supplied citation count of 3,123 and h-index of 30 provide quantitative indicators of citation activity associated with the researcher’s Google Scholar profile. These measurements can help describe scholarly visibility but should not be interpreted as a complete measure of research quality, societal impact, or scientific importance. [4]

Award Suitability

The Distinguished Scientist Award is presented here in connection with the International Research Awards and the supplied academic profile of Ho Soon Min. The available information documents an established chemistry research profile, institutional affiliation, publication activity, citation indicators, and a persistent ORCID identifier. These elements constitute identifiable academic-profile information relevant to an award record. [1] [2]

Conclusion

Ho Soon Min’s supplied academic profile identifies a chemistry researcher at INTI International University in Malaysia, with 371 documents, 3,123 citations, and an h-index of 30. His ORCID identifier further supports scholarly identity management. These data provide a concise basis for documenting his research profile in relation to the Distinguished Scientist Award. [1] [2]

References

  1. Google Scholar. (n.d.). Ho Soon Min — Google Scholar profile. Google Scholar.
    https://scholar.google.com/citations?user=gegoUv0AAAAJ&hl=en
  2. ORCID. (n.d.). Ho Soon Min — ORCID record. ORCID.
    https://orcid.org/0000-0002-3697-5091
  3. Rauf, A., Naz, S., Ahmad, Z., Rashid, U., Marryum, Ayub, K., Aetizaz, M., Ho, S.-M., Muhammad, N., Mujeeb-ur-Rehman, Alsanie, W. F., & Alamri, A. S. (2025). Aldose reductase inhibition, molecular docking, and density functional theory studies of dinaphthodiospyrol H from Diospyros kaki (Japanese persimmon). Journal of Pure and Applied Microbiology, 19(1), 428–437. https://doi.org/10.22207/JPAM.19.1.32

  4. Khan, J., Alotaibi, M. A., Din, I. U., Alharthi, A. I., Saeed, T., Nasir, Q., Min, H. S., Naeem, A., Bakht, M. A., & Ahmad, A. (2025). Photocatalytic degradation of organophosphates using nanocrystalline ZnO synthesized by modified sonochemical method. Catalysts, 15(9), 820.
    https://doi.org/10.3390/catal15090820
  5. Sarwar, S., Sarwar, N., Ali, H., Rafiullah, Khan, R., Ahmad, A., Ullah, A., Soonmin, H., & Ullah, N. (2025). Targeting cutaneous leishmaniasis with thiadiazine thione derivatives: An in vivo study of its anti-inflammatory, anti-pyretic, anti-nociceptive, and anti-sedative properties. Biomedicines, 13(1), 93.
    https://doi.org/10.3390/biomedicines13010093

Tianwei He | Chemistry and Materials Science | Best Researcher Award

Prof Dr. Tianwei He | Chemistry and Materials Science | Best Researcher Award 

Yunnan University | China

Dr. Tianwei He is an internationally recognized materials scientist and computational chemist whose research advances the rational discovery and design of next-generation electrocatalysts for sustainable energy and chemical transformations. He is currently an Associate Professor at the School of Materials and Energy, Yunnan University, China, where he leads cutting-edge research at the intersection of density functional theory (DFT), nanocatalysis, and machine learning. His academic training and professional trajectory span leading institutions in China, Australia, Germany, and Macau, reflecting a strong global research footprint. Dr. He obtained his PhD in Computational Materials Science from Queensland University of Technology (QUT), Australia, following earlier degrees in Materials Science and Engineering. He subsequently held postdoctoral and assistant researcher positions at the Fritz Haber Institute of the Max Planck Society (Germany), University of Macau, and Queensland University of Technology, working under renowned scholars including Prof. Karsten Reuter, Prof. Hui Pan, and Prof. Aijun Du. These experiences shaped his expertise in theoretical catalysis, surface science, and reaction mechanism modeling. His research focuses on the computational discovery of novel nanocatalysts for key electrochemical and photocatalytic reactions within the C, N, O, and H cycles, including HER, OER, ORR, nitrogen reduction, CO/CO₂ reduction, and selective hydrogenation. By constructing structure- and composition-sensitive models using DFT, NEB, and molecular dynamics, Dr. He provides atomic-level insights into active sites, scaling relationships, and reaction pathways. In recent years, he has integrated machine learning approaches to accelerate catalyst screening and performance prediction. Dr. He has authored and co-authored an extensive body of high-impact publications in premier journals such as Journal of the American Chemical Society, PNAS, Chem, Advanced Materials, Advanced Energy Materials, Chemical Society Reviews, ACS Catalysis, and Small. With an h-index of 38, over 4,900 citations, and multiple ESI Highly Cited and Hot Papers, his work is widely recognized for its originality and influence in the catalysis community. His studies on single-atom catalysts, heteronuclear dual-atom systems, high-entropy catalysts, and low-dimensional heterostructures have significantly advanced understanding of catalytic stability, selectivity, and efficiency. In addition to research, Dr. He actively contributes to the scientific community as an invited reviewer for leading journals and as a member of early-career editorial boards for Materials Today Energy, Battery Energy, and Journal of Electrochemistry. Through sustained excellence in research, mentorship, and international collaboration, Dr. Tianwei He continues to play a pivotal role in shaping the future of computational catalysis and sustainable energy materials.

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