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Xiang Chen

National University of Singapore · SG
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Area of research
Renewable Energy, Sustainability and the Environment · Polymers and Plastics
Research interest
Research focused on Electrolysis and Nanorod, with related work in Dissolution, Mesoporous material, Overpotential. Notable publications include 'Photocatalytic Dissolution of Precious Metals by TiO 2 through Photogenerated Free Radicals', 'Novel pitaya-inspired well-defined core–shell nanospheres with ultrathin surface imprinted nanofilm from magnetic mesoporous nanosilica for highly efficient chloramphenicol removal', and 'Identifying the Bifunctional Mechanism in Alkaline Water Electrolysis by Lewis Pairs at the Single-Atom Scale'.
h-index
citations
401
works
9
NIH funding
primary concept
email

Recent publications

Identifying the Bifunctional Mechanism in Alkaline Water Electrolysis by Lewis Pairs at the Single-Atom Scale
Journal of the American Chemical Society 2025cited by 68position: middledoi
Selective and Energy Efficient Electrocatalytic CO <sub>2</sub> ‐to‐Ethanol Conversion through Anion Modulation
Angewandte Chemie International Edition 2025cited by 23position: middledoi
Advancing Multiscale-Coupled Heterointerface Catalysts for Enhanced Water Electrolysis
Accounts of Materials Research 2025cited by 19position: middledoi
Breaking the Scaling Relationship in Water Oxidation Enabled by the Electron Buffering Effect of the Fullerene Network
Journal of the American Chemical Society 2025cited by 15position: firstdoi
Fullerene Network‐Buffered Platinum Nanoparticles Toward Efficient and Stable Electrochemical Ammonia Oxidation Reaction for Hydrogen Production
Angewandte Chemie International Edition 2025cited by 13position: firstdoi
Achieving High‐Performance Electrocatalytic Water Oxidation on Ni(OH)<sub>2</sub> with Optimized Intermediate Binding Energy Enabled by S‐Doping and CeO<sub>2</sub>‐Interfacing
Small 2023cited by 54position: firstdoi
Photocatalytic Dissolution of Precious Metals by TiO<sub>2</sub> through Photogenerated Free Radicals
Angewandte Chemie International Edition 2022cited by 86position: middledoi
Hollow imprinted polymer nanorods with a tunable shell using halloysite nanotubes as a sacrificial template for selective recognition and separation of chloramphenicol
RSC Advances 2016cited by 39position: middledoi
Novel pitaya-inspired well-defined core–shell nanospheres with ultrathin surface imprinted nanofilm from magnetic mesoporous nanosilica for highly efficient chloramphenicol removal
Chemical Engineering Journal 2015cited by 84position: middledoi

Grants

No grants ingested yet.

Frequent collaborators

Yumin Da · National University of Singapore6 papers (2023–2025)Wei Chen · National University of Singapore5 papers (2023–2025)Hongqiang Jin · National University of Singapore4 papers (2025–2025)Lei Fan · National University of Singapore4 papers (2025–2025)Yukun Xiao · National University of Singapore4 papers (2025–2025)Dongming Liu · Shandong University3 papers (2023–2025)Rui Jiang · National University of Singapore3 papers (2025–2025)Hexing Li · Ministry of the Environment3 papers (2022–2025)Yongsheng Yan · Jiangsu University2 papers (2015–2016)Yuwen Cheng · Harbin Institute of Technology2 papers (2023–2025)Atian Xie · Jiangsu University2 papers (2015–2016)Shibo Xi · Agency for Science, Technology and Research2 papers (2025–2025)Shangfeng Yang · University of Science and Technology of China2 papers (2025–2025)Jinsong He · Jiangsu University2 papers (2015–2016)Yanwei Lum · Tianjin University2 papers (2025–2025)Qian He · Central South University2 papers (2025–2025)Jiangdong Dai · Jiangsu University2 papers (2015–2016)Hao Ma · Shenzhen University1 papers (2025–2025)He Liu · Pennsylvania State University1 papers (2023–2023)Xin Wang · University of Southampton1 papers (2025–2025)
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