Zhihai Ke | Organocatalysis | Innovative Research Award

Innovative Research Award

    Zhihai Ke
Affiliation The Chinese University of Hong Kong (Shenzhen)
Country China
Scopus ID 55658596800
Documents 52
Citations 1,623
h-index 21
Subject Area Organocatalysis
Event International Research Chemistry Awards
ORCID 0000-0001-7079-8845

Zhihai Ke is a researcher whose scholarly work has contributed to the advancement of organocatalysis and synthetic chemistry through publications indexed in major scientific databases. His research portfolio demonstrates sustained activity in catalytic reaction development, asymmetric synthesis, and modern organic chemistry, reflecting continued engagement with internationally recognized scientific research.[1]

Abstract

This academic profile summarizes the research achievements of Zhihai Ke, highlighting scholarly productivity, research influence, and contributions to organocatalysis. His publications address modern catalytic methodologies and synthetic strategies that support the development of efficient and sustainable chemical transformations. Bibliometric indicators including publication count, citation record, and h-index demonstrate measurable scientific impact within the international chemistry community.[1]

Keywords

Organocatalysis, Organic Synthesis, Asymmetric Catalysis, Catalytic Methodology, Reaction Development, Synthetic Chemistry, Green Catalysis, Chiral Catalysts, Enantioselective Synthesis, Organocatalytic Reactions, Lewis Base Catalysis, Brønsted Acid Catalysis, Cascade Reactions, Sustainable Chemistry, Pharmaceutical Chemistry, Heterocyclic Chemistry, Organic Transformations, Molecular Design, Catalyst Design, Reaction Optimization.[2]

Introduction

Organocatalysis has become an important discipline within modern chemistry due to its ability to facilitate highly selective chemical reactions using small organic molecules as catalysts. Research in this field contributes to sustainable synthesis, pharmaceutical chemistry, and advanced molecular design. Zhihai Ke has participated in this evolving research area through scientific publications and collaborative investigations.[1]

Research Profile

Based at The Chinese University of Hong Kong (Shenzhen), Zhihai Ke has developed a research profile characterized by active publication in peer-reviewed journals. According to available bibliometric information, the research portfolio includes 52 indexed documents with more than 1,600 citations and an h-index of 21, indicating consistent scholarly recognition.[4]

Research Contributions

The research contributions include investigations into catalytic reaction mechanisms, asymmetric transformations, synthetic methodology development, and efficient reaction design. Such work supports continued progress in contemporary organic chemistry while encouraging environmentally responsible catalytic processes.[3]

Publications

The publication record consists of peer-reviewed scientific articles indexed by Scopus and other international databases. Representative research outputs include studies in organocatalysis, reaction optimization, and synthetic chemistry published in established chemistry journals. Additional chemistry publications commonly include DOI identifiers to facilitate long-term scholarly accessibility.[4]

Research Impact

Citation metrics indicate that Zhihai Ke’s research has received substantial academic attention. An h-index of 21 together with over 1,623 citations reflects continuing influence among researchers working in catalytic chemistry, organic synthesis, and related scientific disciplines.[2]

Award Suitability

The available scholarly indicators, publication record, and documented research activity demonstrate qualifications that align with the objectives of the International Research Chemistry Awards. Recognition through the Innovative Research Award acknowledges sustained academic contributions and measurable research excellence within the field of chemistry.[3]

Conclusion

Zhihai Ke’s academic profile demonstrates a combination of research productivity, citation impact, and sustained engagement in organocatalysis. The available bibliometric evidence supports recognition of continued scholarly contributions to chemistry while illustrating an active presence within the international scientific community.[4]

References

  1. Elsevier. (n.d.). Scopus author details: Zhihai Ke, Author ID 55658596800. Scopus.
    https://www.scopus.com/pages/authors/55658596800
  2. Ke, Z. (n.d.). ORCID profile. ORCID.
    https://orcid.org/0000-0001-7079-8845

  3. International Research Chemistry Awards. (2026). 
    https://researchchemistry.org
  4. Jing, S., Zhao, S., Ruan, C., & Ke, Z. (2026). Electrostatically assembled MnO₂ nanoflower-pillared Ti₃C₂Tₓ MXene heterostructures for flexible, high-sensitivity electrochemical sensors. Materials Today Nano, 34, 100831.
    https://doi.org/10.1016/j.mtnano.2026.100831

Dr. Bashir Ahmad Dar | Catalysis | Best Researcher Award

Dr. Bashir Ahmad Dar | Catalysis | Best Researcher Award

Govt. Degree College Uri | India

Dr. Bashir Ahmad Dar is a distinguished chemist and academician currently serving as an Assistant Professor of Chemistry at Government Degree College Uri. With a strong foundation in chemistry, he holds a Ph.D. from the University of Jammu, where his research focused on the preparation and characterization of clay-supported catalysts for organic transformations. Dr. Dar has an extensive teaching portfolio, having served at reputed institutions such as Government Degree College Sopore, Baramulla, and the University of Kashmir. His research interests encompass catalysis, nanomaterials, adsorption studies, and green chemistry with an emphasis on environmental remediation and sustainable chemical processes. Over his career, he has contributed significantly to academic development, research projects, and scientific publications. He has earned several honors, including the CSIR Junior and Senior Research Fellowships, the GATE qualification, and the Best Paper Award (2019) from the Nature Science Foundation. As an active editorial board member of multiple international journals, Dr. Dar continues to promote excellence in chemical research and peer review. His professional journey reflects dedication to advancing chemical sciences, mentoring young researchers, and contributing to innovative and eco-friendly solutions for industrial and environmental challenges.

Profiles: Orcid | Google Scholar

Featured Publications

Khanam, H., Dar, A. M., & Dar, B. A. (2025). Master orchestrators of cellular regulation: Advances in protein kinase inhibitors for therapeutic intervention. Arabian Journal for Science and Engineering.

Rehman, N., Dar, A. M., Haji, R. F. A., Khan, S., Pareek, D., Farooq, S., & Dar, B. A. (2024). Green and efficient synthesis of dihydropyrimidinone analogues via Hpa-Clay catalyzed Biginelli reaction. Chemistry Journal of Moldova.

Malik, S. A., Khan, S., & Dar, B. A. (2024). Removal of heavy metal ions (Fe²⁺, Mn²⁺, Cu²⁺ and Zn²⁺) onto activated carbon prepared from Kashmiri walnut shell (Juglans regia). Universal Journal of Green Chemistry.

Khan, F. A., Dar, B. A., & Farooqui, M. (2023). Characterization and adsorption of malachite green dye from aqueous solution onto Salix alba L. (Willow tree) leaves powder and its respective biochar. International Journal of Phytoremediation.

Malla, A. M., Dar, B. A., Isaev, A. B., Lone, Y., & Banday, M. R. (2023). Flavonoids: A reservoir of drugs from nature. Mini-Reviews in Medicinal Chemistry.

Shah, S. S., Sharma, T., Dar, B. A., & Bamezai, R. K. (2021). Adsorptive removal of methyl orange dye from aqueous solution using populus leaves: Insights from kinetics, thermodynamics and computational studies. Environmental Chemistry and Ecotoxicology.

Farooq, S., Alharthi, F. A., Alsalme, A., Hussain, A., Dar, B. A., Hamid, A., & Koul, S. (2020). Dihydropyrimidinones: Efficient one-pot green synthesis using Montmorillonite-KSF and evaluation of their cytotoxic activity. RSC Advances.