Innovative Research Award
Zhihai Ke |
|
|---|---|
| Affiliation | The Chinese University of Hong Kong |
| Country | China |
| Scopus ID | 55658596800 |
| Documents | 52 |
| Citations | 1,619 |
| h-index | 21 |
| Subject Area | Material Chemistry |
| Event | International Research Scientist Awards |
| ORCID | 0000-0001-7079-8845 |
Zhihai Ke
The Chinese University of Hong Kong
The Innovative Research Award recognizes researchers whose scholarly contributions demonstrate sustained scientific excellence, methodological innovation, and measurable academic impact. This recognition profile presents a structured overview of the research achievements of Zhihai Ke, highlighting publication performance, citation influence, research specialization in Material Chemistry, and academic contributions based on publicly available scholarly information.[1]
Abstract
Zhihai Ke has established a notable research portfolio in the field of Material Chemistry through interdisciplinary investigations involving functional materials, nanostructures, electrochemical systems, and advanced material characterization. His scientific publications have contributed to the understanding of emerging materials with applications in energy storage, catalysis, environmental sustainability, and next-generation electronic technologies. According to publicly available bibliometric information, his scholarly record includes 52 indexed publications, more than 1,600 citations, and an h-index of 21, reflecting consistent academic visibility and citation performance within the international research community.[1][2]
Keywords
Material Chemistry; Functional Materials; Nanomaterials; Electrochemistry; Energy Storage; Advanced Materials; Catalysis; Scientific Publications; Citation Analysis; Scopus; Research Excellence; Innovative Research Award.
Introduction
Material Chemistry has become one of the most rapidly evolving scientific disciplines because of its central role in developing sustainable technologies, high-performance functional materials, renewable energy systems, and environmentally responsible industrial processes. Researchers working within this discipline integrate concepts from chemistry, physics, engineering, and nanotechnology to design materials with enhanced structural, electrical, catalytic, and mechanical properties.[4]
Research Profile
Zhihai Ke is affiliated with The Chinese University of Hong Kong and has developed an internationally recognized publication record within Material Chemistry. His scholarly profile demonstrates consistent productivity through peer-reviewed journal articles indexed in major bibliographic databases. The combination of publication volume, citation accumulation, and h-index indicates both productivity and sustained scholarly influence over multiple years of active research.[1]
Research Contributions
The research contributions of Zhihai Ke encompass several important themes within Material Chemistry, particularly the development of functional materials possessing improved structural stability, catalytic efficiency, and electrochemical performance. His publications demonstrate an emphasis on designing innovative material systems capable of addressing scientific challenges associated with renewable energy technologies, environmental sustainability, and advanced manufacturing processes.[5]
Publications
The publication record of Zhihai Ke demonstrates sustained scholarly productivity within the field of Material Chemistry. His research articles have appeared in internationally recognized peer-reviewed journals and collectively address topics related to functional materials, nanostructured systems, electrochemical applications, advanced characterization methods, and materials engineering. According to the available Scopus profile, the researcher has authored 52 indexed publications that have accumulated more than 1,600 citations, reflecting continued academic visibility and influence within the scientific community.[1][2]
Research Impact
Research impact is commonly evaluated through multiple indicators including publication output, citation frequency, author-level metrics, collaboration, and the scientific influence of published work. Zhihai Ke’s bibliometric profile indicates consistent scholarly performance with an h-index of 21, demonstrating that a substantial number of publications have received significant citation attention from the international research community.[1]
Award Suitability
The objectives of the Innovative Research Award include recognizing originality, sustained scholarly productivity, scientific quality, measurable academic influence, and meaningful contributions to research advancement. Based on publicly available scholarly indicators, Zhihai Ke demonstrates several characteristics aligned with these objectives, including consistent publication activity, strong citation performance, interdisciplinary research engagement, and internationally visible scientific contributions.[1][3]
Conclusion
Zhihai Ke has established a strong academic profile through sustained contributions to Material Chemistry, supported by internationally indexed publications, significant citation performance, and interdisciplinary scientific research. His work contributes to advancing knowledge in functional materials and related technological applications while maintaining continued visibility within the international scientific literature.[1]
External Links
References
- Elsevier. (n.d.). Scopus author details: Zhihai Ke, Author ID 55658596800. Scopus.
https://www.scopus.com/authid/detail.uri?authorId=55658596800
- Lu, Y., Wang, Y., Ye, K., & Ke, Z. (2026). Single-Precursor to Dual-Function: A Transformable Metal–Organic Framework Nanoplatform for Photocatalytic H₂ Evolution and CO₂ Reduction. ACS Applied Materials & Interfaces.
https://doi.org/10.1021/acsami.6c07958
- Wu, Y., He, J., Li, X., Chen, Y., & Ke, Z. (2025). Phase-engineered zirconium MOF-based titanium single-atom catalysts: Phase-dependent properties and applications in biodiesel synthesis. Journal of Materials Chemistry A.
https://doi.org/10.1039/D4TA07503J
- Kim, C.-A., Wu, J., Zhu, J., Li, H., & Ke, Z. (2025). Computational Modeling and Experimental Approaches for Understanding the Mechanisms of [FeFe]-Hydrogenase. Advanced Science.
https://doi.org/10.1002/advs.202408297
- Zhang, M., & Ke, Z. (2025). Zwitterionic Dual Halogen Bond-Catalyzed Electrophilic Bromination of Electron-Deficient Arenes under Mild Conditions. ACS Catalysis.
https://doi.org/10.1021/acscatal.5c00619