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Chemistry

D-Index
55
Citations
14753
World Ranking
11971
National Ranking
1897

Overview

Liang-Xin Ding is affiliated with the South China University of Technology in China. Their research primarily spans the fields of Energy and Engineering, with a strong focus on Renewable Energy, Sustainability and the Environment, Electrical and Electronic Engineering, Catalysis, Materials Chemistry, and Computer Networks and Communications.

The principal topics in Ding's work include Ammonia Synthesis and Nitrogen Reduction, Advanced Photocatalysis Techniques, Caching and Content Delivery, Electrocatalysts for Energy Conversion, Advanced Battery Technologies Research, Advanced Battery Materials and Technologies, and Advancements in Battery Materials.

Ding has coauthored publications with several frequent collaborators, including Haihui Wang, Gao-Feng Chen, Honghong Liu, Sibo Chen, and Haifeng Jiang.

Recent research papers authored or coauthored by Ding include:

  • Electrochemical reduction of nitrate to ammonia via direct eight-electron transfer using a copper-molecular solid catalyst (2020, Nature Energy)
  • Enabled Efficient Ammonia Synthesis and Energy Supply in a Zinc-Nitrate Battery System by Separating Nitrate Reduction Process into Two Stages (2023, Angewandte Chemie International Edition)
  • Size control and electronic manipulation of Ru catalyst over B, N co-doped carbon network for high-performance hydrogen evolution reaction (2022, Nano Research)
  • Competing hydrogen evolution reaction: a challenge in electrocatalytic nitrogen fixation (2021, Materials Chemistry Frontiers)
  • Sn-Doped Black Phosphorene for Enhancing the Selectivity of Nitrogen Electroreduction to Ammonia (2022, Advanced Functional Materials)

Ding frequently publishes in scientific journals such as Angewandte Chemie International Edition, Advanced Functional Materials, Angewandte Chemie, Chemical Engineering Science, and Journal of Materials Chemistry A.

Best Publications

  • Electrochemical reduction of nitrate to ammonia via direct eight-electron transfer using a copper–molecular solid catalyst

    Gao-Feng Chen;Gao-Feng Chen;Yifei Yuan;Haifeng Jiang;Shi-Yu Ren

  • Nitrogen Fixation by Ru Single-Atom Electrocatalytic Reduction

    Hengcong Tao;Changhyeok Choi;Liang-Xin Ding;Zheng Jiang

  • Molybdenum Carbide Nanodots Enable Efficient Electrocatalytic Nitrogen Fixation under Ambient Conditions

    Hui Cheng;Liang-Xin Ding;Gao-Feng Chen;Lili Zhang

  • Efficient Electrocatalytic N2 Fixation with MXene under Ambient Conditions

    Yaru Luo;Gao-Feng Chen;Li Ding;Xinzhi Chen

  • Ammonia Electrosynthesis with High Selectivity under Ambient Conditions via a Li+ Incorporation Strategy

    Gao-Feng Chen;Xinrui Cao;Shunqing Wu;Xingye Zeng

  • Porous Pt-Ni-P Composite Nanotube Arrays: Highly Electroactive and Durable Catalysts for Methanol Electrooxidation

    Liang-Xin Ding;An-Liang Wang;Gao-Ren Li;Zhao-Qing Liu

  • Ammonia Synthesis Under Ambient Conditions: Selective Electroreduction of Dinitrogen to Ammonia on Black Phosphorus Nanosheets.

    Lili Zhang;Liang-Xin Ding;Gao-Feng Chen;Xianfeng Yang

  • Advances in Electrocatalytic N2 Reduction—Strategies to Tackle the Selectivity Challenge

    Gao‐Feng Chen;Shiyu Ren;Lili Zhang;Hui Cheng

  • Design and Synthesis of MnO2/Mn/MnO2 Sandwich-Structured Nanotube Arrays with High Supercapacitive Performance for Electrochemical Energy Storage

    Qi Li;Zi-Long Wang;Gao-Ren Li;Rui Guo

  • Enhancing interfacial contact in all solid state batteries with a cathode-supported solid electrolyte membrane framework

    Xinzhi Chen;Wenjun He;Liang-Xin Ding;Suqing Wang

  • Paralyzed membrane: Current-driven synthesis of a metal-organic framework with sharpened propene/propane separation

    Sheng Zhou;Yanying Wei;Libo Li;Yifan Duan

  • Freestanding, Hydrophilic Nitrogen-Doped Carbon Foams for Highly Compressible All Solid-State Supercapacitors.

    Kang Xiao;Liang-Xin Ding;Guoxue Liu;Hongbin Chen

  • Honeycomb-like NiMoO4 ultrathin nanosheet arrays for high-performance electrochemical energy storage

    Kang Xiao;Lu Xia;Guoxue Liu;Suqing Wang

  • A nano-silica modified polyimide nanofiber separator with enhanced thermal and wetting properties for high safety lithium-ion batteries

    Ying Wang;Suqing Wang;Junqi Fang;Liang-Xin Ding

  • Graphene-based nitrogen-doped carbon sandwich nanosheets: a new capacitive process controlled anode material for high-performance sodium-ion batteries

    Dongdong Li;Dongdong Li;Lei Zhang;Lei Zhang;Hongbin Chen;Jun Wang

  • Porous SnO2@C/graphene nanocomposite with 3D carbon conductive network as a superior anode material for lithium-ion batteries

    Peichao Lian;Jingyi Wang;Dandan Cai;Liangxin Ding

  • High Efficiency Electrochemical Nitrogen Fixation Achieved with a Lower Pressure Reaction System by Changing the Chemical Equilibrium

    Hui Cheng;Peixin Cui;Fangrui Wang;Liang‐Xin Ding

  • Hierarchical Mesoporous/Macroporous Perovskite La0.5Sr0.5CoO3-x Nanotubes: A Bifunctional Catalyst with Enhanced Activity and Cycle Stability for Rechargeable Lithium Oxygen Batteries.

    Guoxue Liu;Hongbin Chen;Lu Xia;Suqing Wang

  • Fe-N-doped carbon nanofiber and graphene modified separator for lithium-sulfur batteries

    Xiong Song;Suqing Wang;Guoping Chen;Tuo Gao

  • Porous nitrogen doped carbon sphere as high performance anode of sodium-ion battery

    Dongdong Li;Hongbin Chen;Guoxue Liu;Meng Wei

Frequent Co-Authors

Haihui Wang
Haihui Wang Tsinghua University
Suqing Wang
Suqing Wang South China University of Technology
Zhong Li
Zhong Li South China University of Technology
Sheng Dai
Sheng Dai University of Leeds
Xianfeng Yang
Xianfeng Yang South China University of Technology
Lei Zhang
Lei Zhang South China University of Technology
Min Zhu
Min Zhu South China University of Technology
Peter J. Ashman
Peter J. Ashman University of Adelaide
Jun Wang
Jun Wang South China University of Technology
Tianpin Wu
Tianpin Wu Argonne National Laboratory

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