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Zhongjian Li

Zhongjian Li

D-Index & Metrics

Engineering and Technology

D-Index
66
Citations
13526
World Ranking
1448
National Ranking
286

Overview

Zhongjian Li is a researcher affiliated with Zhejiang University in China, primarily working in the fields of Energy and Engineering. Their research contributions focus extensively on Renewable Energy, Sustainability and the Environment, Electrical and Electronic Engineering, Catalysis, Materials Chemistry, and Biomedical Engineering.

The scientist has explored a range of topics surrounding energy conversion and sustainable technologies, with main themes including:

  • Electrocatalysts for Energy Conversion
  • CO2 Reduction Techniques and Catalysts
  • Advanced battery technologies research
  • Advanced Photocatalysis Techniques
  • Ammonia Synthesis and Nitrogen Reduction
  • Fuel Cells and Related Materials
  • Microbial Fuel Cells and Bioremediation

Zhongjian Li has published numerous papers with a strong presence in high-impact journals. Some of the recent publications are:

  • Dynamic Activation of Adsorbed Intermediates via Axial Traction for the Promoted Electrochemical CO2 Reduction, 2020, Angewandte Chemie International Edition
  • Synergistic Effect of Atomically Dispersed Ni-Zn Pair Sites for Enhanced CO2 Electroreduction, 2021, Advanced Materials
  • Highly active ruthenium sites stabilized by modulating electron-feeding for sustainable acidic oxygen-evolution electrocatalysis, 2022, Energy & Environmental Science
  • Proton Capture Strategy for Enhancing Electrochemical CO2 Reduction on Atomically Dispersed Metal-Nitrogen Active Sites, 2021, Angewandte Chemie International Edition
  • Electrochemical C-N coupling of CO2 and nitrogenous small molecules for the electrosynthesis of organonitrogen compounds, 2023, Chemical Society Reviews

The scientist frequently publishes in several key venues, with multiple contributions to:

  • Angewandte Chemie
  • Angewandte Chemie International Edition
  • Nano Energy
  • Advanced Functional Materials
  • Chemical Engineering Journal

Collaborations have been a significant part of their research, with frequent co-authors including:

  • Lecheng Lei
  • Yang Hou
  • Bin Yang
  • Xiahan Sang

Best Publications

  • Amorphous Cobalt–Iron Hydroxide Nanosheet Electrocatalyst for Efficient Electrochemical and Photo-Electrochemical Oxygen Evolution

    Wei Liu;Hu Liu;Lianna Dang;Hongxiu Zhang

  • Highly active ruthenium site stabilized by modulating electron-feeding for sustainable acidic oxygen-evolution electrocatalysis

    Unknown

  • Electricity production during the treatment of real electroplating wastewater containing Cr6+ using microbial fuel cell

    Zhongjian Li;Xingwang Zhang;Lecheng Lei

  • Atomically Defined Undercoordinated Active Sites for Highly Efficient CO 2 Electroreduction

    Wanzhen Zheng;Jian Yang;Hengquan Chen;Yang Hou

  • NiCoMo Hydroxide Nanosheet Arrays Synthesized via Chloride Corrosion for Overall Water Splitting

    Shaoyun Hao;Luchuan Chen;Chunlin Yu;Bin Yang

  • Polymorphic CoSe2 with mixed orthorhombic and cubic phases for highly efficient hydrogen evolution reaction.

    Hongxiu Zhang;Bin Yang;Xiaolin Wu;Zhongjian Li

  • Synergistic Effect of Atomically Dispersed Ni-Zn Pair Sites for Enhanced CO2 Electroreduction.

    Youzhi Li;Bo Wei;Minghui Zhu;Jiacheng Chen

  • Dynamic Activation of Adsorbed Intermediates via Axial Traction for the Promoted Electrochemical CO2 Reduction.

    Xinyue Wang;Yu Wang;Xiahan Sang;Wanzhen Zheng

  • Fe ? N4 Sites Embedded into Carbon Nanofiber Integrated with Electrochemically Exfoliated Graphene for Oxygen Evolution in Acidic Medium

    Chaojun Lei;Hengquan Chen;Junhui Cao;Jian Yang

  • Local Spin‐State Tuning of Iron Single‐Atom Electrocatalyst by S‐Coordinated Doping for Kinetics‐Boosted Ammonia Synthesis

    Unknown

  • Exceptional catalytic activity of oxygen evolution reaction via two-dimensional graphene multilayer confined metal-organic frameworks

    Unknown

  • Proton Capture Strategy for Enhancing Electrochemical CO2 Reduction on Atomically Dispersed Metal-Nitrogen Active Sites*.

    Xinyue Wang;Xiahan Sang;Chung-Li Dong;Siyu Yao

  • A strongly coupled 3D ternary Fe2O3@Ni2P/Ni(PO3)2 hybrid for enhanced electrocatalytic oxygen evolution at ultra-high current densities

    Xiaodi Cheng;Zhiyan Pan;Chaojun Lei;Yangjun Jin

  • A p-Si/NiCoSex core/shell nanopillar array photocathode for enhanced photoelectrochemical hydrogen production

    Hongxiu Zhang;Qi Ding;Denghong He;Hu Liu

  • Boosting Electroreduction Kinetics of Nitrogen to Ammonia via Tuning Electron Distribution of Single-Atomic Iron Sites.

    Yan Li;Yan Li;Junwei Li;Junheng Huang;Junxiang Chen

  • Azo dye treatment with simultaneous electricity production in an anaerobic-aerobic sequential reactor and microbial fuel cell coupled system.

    Zhongjian Li;Xingwang Zhang;Jun Lin;Song Han

  • Designing 3d dual transition metal electrocatalysts for oxygen evolution reaction in alkaline electrolyte: Beyond oxides

    Kexin Wang;Xinyue Wang;Zhongjian Li;Bin Yang

  • Accelerated water activation and stabilized metal-organic framework via constructing triangular active-regions for ampere-level current density hydrogen production

    Unknown

  • Gas Diffusion Strategy for Inserting Atomic Iron Sites into Graphitized Carbon Supports for Unusually High-Efficient CO2 Electroreduction and High-Performance Zn–CO2 Batteries

    Tingting Wang;Xiahan Sang;Wanzhen Zheng;Bin Yang

  • 1D SnO2 with Wire-in-Tube Architectures for Highly Selective Electrochemical Reduction of CO2 to C1 Products

    Lei Fan;Zheng Xia;Meijia Xu;Yingying Lu

  • Biodegradation of Reactive blue 13 in a two-stage anaerobic/aerobic fluidized beds system with a Pseudomonas sp. isolate

    Jun Lin;Xingwang Zhang;Zhongjian Li;Lecheng Lei

  • Carbon‐Rich Nonprecious Metal Single Atom Electrocatalysts for CO2 Reduction and Hydrogen Evolution

    Tingting Wang;Qidong Zhao;Yuanyuan Fu;Chaojun Lei

  • Tuning d-band center of tungsten carbide via Mo doping for efficient hydrogen evolution and Zn–H2O cell over a wide pH range

    Lin Wang;Lin Wang;Zhongjian Li;Kexin Wang;Qizhou Dai

  • Bacteria-based AND logic gate: a decision-making and self-powered biosensor.

    Zhongjian Li;Miriam A. Rosenbaum;Arvind Venkataraman;Tsz Kin Tam

Frequent Co-Authors

Lecheng Lei
Lecheng Lei Zhejiang University
Bin Yang
Bin Yang Zhejiang University
Yang Hou
Yang Hou Zhejiang University
Xingwang Zhang
Xingwang Zhang Zhejiang University
Gang Wu
Gang Wu Washington University in St. Louis
Chris Yuan
Chris Yuan Case Western Reserve University
Qinghua Zhang
Qinghua Zhang Southwest Jiaotong University
Jianguo Lu
Jianguo Lu Zhejiang University
Zhenhai Wen
Zhenhai Wen Chinese Academy of Sciences
Xinliang Feng
Xinliang Feng TU Dresden

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