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D-Index
67
Citations
21511
World Ranking
6773
National Ranking
1209

Overview

Jianping Xiao is a researcher affiliated with the Dalian Institute of Chemical Physics in China. Their research covers extensive work in the fields of Medicine and Energy, with significant focus on subfields such as Renewable Energy, Sustainability and the Environment, Catalysis, Materials Chemistry, Electrical and Electronic Engineering, and Surgery.

Over the course of their career, Jianping Xiao has contributed to several main topics of scientific investigation, including:

  • Catalytic Processes in Materials Science
  • Electrocatalysts for Energy Conversion
  • CO2 Reduction Techniques and Catalysts
  • Ammonia Synthesis and Nitrogen Reduction
  • Advanced Photocatalysis Techniques
  • Catalysis and Oxidation Reactions
  • Head and Neck Cancer Studies

Key recent papers authored by Jianping Xiao reflect their involvement in diverse catalytic and electrochemical processes:

  • Copper-catalysed exclusive CO2 to pure formic acid conversion via single-atom alloying, 2021, published in Nature Nanotechnology
  • Enhancing the stability of cobalt spinel oxide towards sustainable oxygen evolution in acid, 2022, published in Nature Catalysis
  • Direct Electrochemical Ammonia Synthesis from Nitric Oxide, 2020, published in Angewandte Chemie International Edition
  • Unraveling oxygen vacancy site mechanism of Rh-doped RuO2 catalyst for long-lasting acidic water oxidation, 2023, published in Nature Communications
  • Accelerating electrochemical CO2 reduction to multi-carbon products via asymmetric intermediate binding at confined nanointerfaces, 2023, published in Nature Communications

Jianping Xiao has published multiple articles in several prominent scientific journals, with frequent contributions in:

  • ACS Catalysis (11 publications)
  • Nature Communications (10 publications)
  • Angewandte Chemie International Edition (9 publications)
  • Journal of the American Chemical Society (8 publications)
  • Angewandte Chemie (8 publications)

Their research collaborations include frequent coauthorship with:

  • Jun Long (33 joint publications)
  • Junlin Yi (25 joint publications)
  • Xuesong Chen (24 joint publications)
  • Chenxi Guo (23 joint publications)
  • Ye Zhang (23 joint publications)

Best Publications

  • Triggering the electrocatalytic hydrogen evolution activity of the inert two-dimensional MoS2 surface via single-atom metal doping

    Jiao Deng;Haobo Li;Jianping Xiao;Yunchuan Tu

  • Selective conversion of syngas to light olefins.

    Feng Jiao;Jinjing Li;Xiulian Pan;Jianping Xiao

  • Robust and conductive two-dimensional metal−organic frameworks with exceptionally high volumetric and areal capacitance

    Dawei Feng;Ting Lei;Maria R. Lukatskaya;Jihye Park

  • Coordinatively unsaturated nickel–nitrogen sites towards selective and high-rate CO2 electroreduction

    Chengcheng Yan;Chengcheng Yan;Haobo Li;Haobo Li;Yifan Ye;Yifan Ye;Haihua Wu;Haihua Wu

  • A single iron site confined in a graphene matrix for the catalytic oxidation of benzene at room temperature.

    Dehui Deng;Xiaoqi Chen;Liang Yu;Xing Wu

  • Understanding trends in electrochemical carbon dioxide reduction rates.

    Xinyan Liu;Jianping Xiao;Jianping Xiao;Hongjie Peng;Xin Hong;Xin Hong

  • Copper-catalysed exclusive CO2 to pure formic acid conversion via single-atom alloying.

    Tingting Zheng;Tingting Zheng;Chunxiao Liu;Chunxiao Liu;Chenxi Guo;Menglu Zhang

  • pH effects on the electrochemical reduction of CO (2) towards C 2 products on stepped copper

    Xinyan Liu;Philomena Schlexer;Philomena Schlexer;Jianping Xiao;Jianping Xiao;Yongfei Ji;Yongfei Ji;Yongfei Ji

  • Direct Electrochemical Ammonia Synthesis from Nitric Oxide.

    Jun Long;Jun Long;Jun Long;Shiming Chen;Yunlong Zhang;Chenxi Guo

  • Room-Temperature Methane Conversion by Graphene-Confined Single Iron Atoms

    Xiaoju Cui;Xiaoju Cui;Xiaoju Cui;Haobo Li;Haobo Li;Yan Wang;Yan Wang;Yuanli Hu;Yuanli Hu

  • Highly doped and exposed Cu(I)–N active sites within graphene towards efficient oxygen reduction for zinc–air batteries

    Haihua Wu;Haihua Wu;Haobo Li;Haobo Li;Xinfei Zhao;Xinfei Zhao;Qingfei Liu;Qingfei Liu

  • Reaction Mechanisms of Well-Defined Metal-N4 Sites in Electrocatalytic CO2 Reduction.

    Zheng Zhang;Zheng Zhang;Jianping Xiao;Xue-Jiao Chen;Song Yu

  • Machine-Learning Methods Enable Exhaustive Searches for Active Bimetallic Facets and Reveal Active Site Motifs for CO2 Reduction

    Zachary W. Ulissi;Zachary W. Ulissi;Michael T. Tang;Michael T. Tang;Jianping Xiao;Jianping Xiao;Xinyan Liu;Xinyan Liu

  • Toward fundamentals of confined catalysis in carbon nanotubes.

    Jianping Xiao;Xiulian Pan;Shujing Guo;Pengju Ren

  • Synergistic Catalysis over Iron-Nitrogen Sites Anchored with Cobalt Phthalocyanine for Efficient CO2 Electroreduction.

    Long Lin;Long Lin;Haobo Li;Chengcheng Yan;Hefei Li;Hefei Li

  • Unsaturated edge-anchored Ni single atoms on porous microwave exfoliated graphene oxide for electrochemical CO2

    Yi Cheng;Yi Cheng;Shiyong Zhao;Haobo Li;Shuai He

  • Reaction-Induced Strong Metal–Support Interactions between Metals and Inert Boron Nitride Nanosheets

    Jinhu Dong;Qiang Fu;Haobo Li;Jianping Xiao

  • A Graphene Composite Material with Single Cobalt Active Sites: A Highly Efficient Counter Electrode for Dye‐Sensitized Solar Cells

    Xiaoju Cui;Jianping Xiao;Yihui Wu;Peipei Du

  • Confined catalysis under two-dimensional materials.

    Haobo Li;Jianping Xiao;Qiang Fu;Xinhe Bao

  • Novel Ultrasonically Assisted Templated Synthesis of Palladium and Silver Dendritic Nanostructures

    Jianping Xiao;Yi Xie;Rui Tang;Meng Chen

Frequent Co-Authors

Xinhe Bao
Xinhe Bao Chinese Academy of Sciences
Dehui Deng
Dehui Deng Dalian Institute of Chemical Physics
Thomas Frauenheim
Thomas Frauenheim University of Bremen
Rui Si
Rui Si Brookhaven National Laboratory
Thomas Heine
Thomas Heine TU Dresden
Jens K. Nørskov
Jens K. Nørskov Technical University of Denmark
Karen Chan
Karen Chan Technical University of Denmark
Agnieszka Kuc
Agnieszka Kuc Helmholtz-Zentrum Dresden-Rossendorf
Xiulian Pan
Xiulian Pan Dalian Institute of Chemical Physics
Thomas F. Jaramillo
Thomas F. Jaramillo Stanford University

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