World's Best Scientists 2026 revealed!

D-Index & Metrics

Chemistry

D-Index
76
Citations
15980
World Ranking
4348
National Ranking
35

Overview

Yugen Zhang is affiliated with the Agency for Science, Technology and Research in Singapore and specializes primarily in the field of Chemistry. Their work spans several subfields including Organic Chemistry, Materials Chemistry, Biomedical Engineering, Inorganic Chemistry, and Renewable Energy, Sustainability and the Environment. Zhang has contributed notably to topics such as antimicrobial agents and applications, antimicrobial peptides and activities, bacterial biofilms and quorum sensing, metal-organic frameworks synthesis and applications, CO2 reduction techniques and catalysts, nanoparticles synthesis and applications, and carbon dioxide utilization in catalysis.

The scientist has published extensively in various academic venues. Frequent publication venues include ChemSusChem, where Zhang has 5 publications, European Polymer Journal with 3 publications, ACS Applied Materials & Interfaces and Green Chemistry each with 2 publications, as well as the Journal of Materials Chemistry B with 2 contributions.

Zhang's recent papers reflect research interests across antimicrobial materials, nanotechnology, and advanced catalysis. Selected recent works include the following:

  • Recent Advances of Zinc-based Antimicrobial Materials (2021), Chemistry - An Asian Journal
  • Redox Active Zn@MOFs as Spontaneous Reactive Oxygen Species Releasing Antimicrobials (2023), Journal of the American Chemical Society
  • Silane-functionalized polyionenes-coated cotton fabrics with potent antimicrobial and antiviral activities (2022), Biomaterials
  • From waste plastic to artificial lotus leaf: Upcycling waste polypropylene to superhydrophobic spheres with hierarchical micro/nanostructure (2023), Applied Catalysis B: Environmental
  • Calcium carbide and its recent advances in biomass conversion (2020), Journal of Bioresources and Bioproducts

Collaboration is a notable aspect of Zhang's research profile. Frequent coauthors include Siew Ping Teong, Arunmozhiarasi Armugam, Shook Pui Chan, Guangshun Yi, and Jinquan Wang. These collaborations suggest a strong interdisciplinary approach, integrating various expertise in chemistry and materials science.

The main areas of study for Zhang highlight a focus on applied chemistry and materials development. The scientist's interests include the synthesis and application of metal-organic frameworks, antimicrobial peptide research, and sustainable chemical processes. Emphasis on renewable energy and environmental chemistry reflects current trends in addressing ecological and health-related material challenges.

Best Publications

  • Functional porous organic polymers for heterogeneous catalysis

    Yugen Zhang;Siti Nurhanna Riduan

  • Conversion of Carbon Dioxide into Methanol with Silanes over N‐Heterocyclic Carbene Catalysts

    Siti Nurhanna Riduan;Yugen Zhang;Jackie Y. Ying

  • Recent developments in carbon dioxide utilization under mild conditions

    Siti Nurhanna Riduan;Yugen Zhang

  • Efficient Catalytic System for the Selective Production of 5-Hydroxymethylfurfural from Glucose and Fructose

    Gen Yong;Yugen Zhang;Jackie Y. Ying

  • Hydroxymethylfurfural production from bioresources: past, present and future

    Siew Ping Teong;Guangshun Yi;Yugen Zhang

  • The first N-heterocyclic carbene-based nickel catalyst for C-S coupling.

    Yugen Zhang;Kao Chin Ngeow;Jackie Y. Ying

  • Imidazolium salts and their polymeric materials for biological applications

    Siti Nurhanna Riduan;Yugen Zhang

  • Copper- and copper–N-heterocyclic carbene-catalyzed C─H activating carboxylation of terminal alkynes with CO2 at ambient conditions

    Dingyi Yu;Yugen Zhang

  • Base-free conversion of 5-hydroxymethylfurfural to 2,5-furandicarboxylic acid over a Ru/C catalyst

    Guangshun Yi;Siew Ping Teong;Yugen Zhang

  • Transition metal complex catalyzed carboxylation reactions with CO2

    Dingyi Yu;Siew Ping Teong;Yugen Zhang

  • Imidazolium salt-modified porous hypercrosslinked polymers for synergistic CO2 capture and conversion

    Jinquan Wang;Waihong Sng;Guangshun Yi;Yugen Zhang

  • Boronic Acids as Hydrogen Bond Donor Catalysts for Efficient Conversion of CO2 into Organic Carbonate in Water

    Jinquan Wang;Yugen Zhang

  • Unexpected CO2 Splitting Reactions To Form CO with N-Heterocyclic Carbenes as Organocatalysts and Aromatic Aldehydes as Oxygen Acceptors

    Liuqun Gu;Yugen Zhang

  • Carboxylation of Terminal Alkynes with Carbon Dioxide Catalyzed by Poly(N-Heterocyclic Carbene)-Supported Silver Nanoparticles

    Dingyi Yu;Mei Xuan Tan;Yugen Zhang

  • Phosphonium salt incorporated hypercrosslinked porous polymers for CO2 capture and conversion

    Jinquan Wang;Jason Gan Wei Yang;Guangshun Yi;Yugen Zhang

  • Sustainable chemistry: imidazolium salts in biomass conversion and CO2 fixation

    Yugen Zhang;Jin Young Gerentt Chan

  • Highly efficient chemical process to convert mucic acid into adipic acid and DFT studies of the mechanism of the rhenium-catalyzed deoxydehydration.

    Xiukai Li;Di Wu;Ting Lu;Guangshun Yi

  • A mesoporous poly-melamine-formaldehyde polymer as a solid sorbent for toxic metal removal

    Mei Xuan Tan;Yin Ngai Sum;Jackie Y. Ying;Yugen Zhang

  • The Production of 5‐Hydroxymethylfurfural from Fructose in Isopropyl Alcohol: A Green and Efficient System

    Linke Lai;Yugen Zhang

  • Selective conversion of fructose to 5-hydroxymethylfurfural catalyzed by tungsten salts at low temperatures.

    Unknown

  • Catalytic Hydrocarboxylation of Alkenes and Alkynes with CO2

    Yugen Zhang;Siti Nurhanna Riduan

Frequent Co-Authors

Jackie Y. Ying
Jackie Y. Ying King Fahd University of Petroleum and Minerals
Jinquan Wang
Jinquan Wang Chinese Academy of Sciences
Yasuo Wakatsuki
Yasuo Wakatsuki Bridgestone (Japan)
Richard H. Holm
Richard H. Holm Harvard University
Haibin Su
Haibin Su Hong Kong University of Science and Technology
Tsuneo Imamoto
Tsuneo Imamoto Chiba University
Yi Yan Yang
Yi Yan Yang Agency for Science, Technology and Research
Ziqiang Lei
Ziqiang Lei Northwest Normal University

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