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

Jay Singh | Chemistry and Materials Science | Research Excellence Award

Jay Singh | Chemistry and Materials Science | Research Excellence Award 

Thapar Institute of Engineering & Technology | India

Dr. Jay Singh is an Assistant Professor at the Thapar Institute of Engineering & Technology, India, with a strong research focus on advanced energy materials for sustainable electrochemical energy conversion and storage. His scholarly work lies at the intersection of energy storage systems, materials science, and water splitting technologies, addressing critical challenges associated with next-generation batteries and clean energy solutions. With a growing citation index of over 190 citations and 14 peer-reviewed journal publications indexed in reputed international databases, his research demonstrates both scientific depth and practical relevance. Dr. Singh’s primary contributions are centered on the design, synthesis, and electrochemical evaluation of advanced electrode materials for lithium-ion, sodium-ion, zinc-ion, and aluminium-ion batteries. He has developed nanostructured and doped transition metal oxides with precisely controlled morphologies to enhance ion diffusion kinetics, electrical conductivity, and long-term cycling stability. His materials engineering strategies have resulted in improved rate capability and electrochemical durability, contributing to the advancement of cost-effective and scalable battery chemistries suitable for large-scale energy storage applications. A distinguishing aspect of Dr. Singh’s research is his integration of machine learning and data-driven approaches into materials optimization, particularly for sodium-ion battery systems. By combining experimental electrochemistry with computational tools, he has accelerated materials screening and performance prediction, enabling efficient coin-cell development and deeper insights into charge storage mechanisms. This interdisciplinary methodology positions his work at the forefront of modern materials research, where artificial intelligence plays a key role in accelerating innovation. In addition to academic research, Dr. Singh has successfully completed consultancy and industry-oriented projects, reflecting his ability to translate fundamental research into practical technological solutions. He has established national and interdisciplinary collaborations, contributing to knowledge exchange and joint research outcomes in the field of sustainable energy materials. His research outputs have been disseminated through peer-reviewed publications and invited technical discussions, strengthening the global discourse on clean energy technologies. Overall, Dr. Jay Singh’s research profile reflects a strong commitment to advancing sustainable energy storage and conversion technologies, with impactful contributions that support the global transition toward renewable and environmentally responsible energy systems.

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Sanboh Lee | Chemistry and Materials Science | Excellence in Research Award

Prof. Sanboh Lee | Chemistry and Materials Science | Excellence in Research Award 

National Tsing Hua University | Taiwan

Professor Sanboh Lee is a highly distinguished scholar in materials science and engineering, internationally recognized for foundational and applied contributions spanning structural materials, polymers, electronic materials, and transport phenomena. His research career has been characterized by exceptional breadth and depth, integrating solid mechanics, materials physics, and microstructural science to address complex material behavior across multiple length scales. Professor Lee’s scientific work has significantly advanced the understanding of elastic interactions between defects and cracks, fracture mechanics, diffusion-induced and thermal stresses, and phase transformations in crystalline and composite materials. His studies on dislocation–crack interactions and elastic inclusions have provided fundamental insights into fracture resistance and toughening mechanisms, influencing the design of high-performance structural materials. In parallel, his research on ionic single crystals and polymer systems has clarified the relationships between mass transport, phase separation, optical behavior, and mechanical performance, with implications for both engineering plastics and functional materials. A major strength of Professor Lee’s research lies in its interdisciplinary scope. His investigations into hydrogen transport, magnetic and mechanical properties of steels, and texture evolution in low-carbon laminations have contributed to improved energy and power-related materials. He has also made important contributions to semiconductor materials, particularly amorphous and nanocrystalline silicon, supporting advances in electronic and device technologies. His work in micro- and nano-machining, nano-imprint technology, and nanostructured materials reflects a forward-looking engagement with emerging fabrication and manufacturing approaches. Professor Lee has further extended materials science principles into unconventional areas, including the mechanics and thermal aging of food materials, demonstrating the versatility and societal relevance of his research framework. His scholarship bridges theory, experimentation, and application, consistently emphasizing structure–property–performance relationships. With more than 280 peer-reviewed journal publications and over 150 invited and contributed presentations, Professor Lee’s work has achieved sustained international impact. His research excellence has been widely recognized through numerous prestigious honors, fellowships, and lifetime achievement awards from leading scientific societies worldwide. In addition, his long-standing service on editorial boards, award committees, and international advisory panels reflects a deep commitment to shaping the global materials science community. Overall, Professor Sanboh Lee’s research profile exemplifies scientific rigor, intellectual leadership, and lasting influence, contributing fundamentally to materials mechanics, functional materials development, and interdisciplinary materials engineering.

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