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Materials Science

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Chemistry

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Overview

Jingjie Wu is affiliated with the University of Cincinnati in the United States. Their research primarily spans the fields of Energy and Engineering, with a notable focus on Renewable Energy, Sustainability and the Environment, Electrical and Electronic Engineering, Catalysis, Materials Chemistry, and Control and Systems Engineering.

The scientist's work concentrates on several main topics, including:

  • CO2 Reduction Techniques and Catalysts
  • Electrocatalysts for Energy Conversion
  • Ionic liquids properties and applications
  • Advanced battery technologies research
  • Ammonia Synthesis and Nitrogen Reduction
  • Advanced Photocatalysis Techniques
  • Advancements in Battery Materials

Jingjie Wu has contributed several papers, among which are:

  • "Highly selective and productive reduction of carbon dioxide to multicarbon products via in situ CO management using segmented tandem electrodes," 2022, Nature Catalysis
  • "Improving the Catalytic Activity of Carbon-Supported Single Atom Catalysts by Polynary Metal or Heteroatom Doping," 2020, Small
  • "Regulation of functional groups on graphene quantum dots directs selective CO2 to CH4 conversion," 2021, Nature Communications
  • "NBOH Site-Activated Graphene Quantum Dots for Boosting Electrochemical Hydrogen Peroxide Production," 2023, Advanced Materials
  • "Spontaneous self-intercalation of copper atoms into transition metal dichalcogenides," 2020, Science Advances

The scientist frequently publishes in the following venues:

  • Small
  • ACS Applied Energy Materials
  • arXiv (Cornell University)
  • Nature Communications
  • Advanced Materials

Collaborations play an important role in Jingjie Wu's research. Frequent coauthors include:

  • Zhengyuan Li
  • Jianfang Zhang
  • Yucheng Wu
  • Yan Wang
  • Tianyu Zhang

Best Publications

  • High Efficiency Photocatalytic Water Splitting Using 2D α-Fe2O3/g-C3N4 Z-Scheme Catalysts

    Xiaojie She;Jingjie Wu;Hui Xu;Hui Xu;Jun Zhong

  • Achieving Highly Efficient, Selective, and Stable CO2 Reduction on Nitrogen-Doped Carbon Nanotubes.

    Jingjie Wu;Ram Manohar Yadav;Mingjie Liu;Pranav P Sharma

  • A metal-free electrocatalyst for carbon dioxide reduction to multi-carbon hydrocarbons and oxygenates

    Jingjie Wu;Sichao Ma;Jing Sun;Jake I. Gold

  • Liquid Phase Exfoliation of Two-Dimensional Materials by Directly Probing and Matching Surface Tension Components.

    Jianfeng Shen;Yongmin He;Yongmin He;Jingjie Wu;Caitian Gao

  • Incorporation of Nitrogen Defects for Efficient Reduction of CO2 via Two-Electron Pathway on Three-Dimensional Graphene Foam

    Jingjie Wu;Mingjie Liu;Pranav P. Sharma;Ram Manohar Yadav

  • Nitrogen‐Doped Carbon Nanotube Arrays for High‐Efficiency Electrochemical Reduction of CO2: On the Understanding of Defects, Defect Density, and Selectivity

    Pranav P. Sharma;Jingjie Wu;Ram Manohar Yadav;Mingjie Liu

  • Electrochemical CO 2 Reduction with Atomic Iron-Dispersed on Nitrogen-Doped Graphene

    Chenhao Zhang;Shize Yang;Jingjie Wu;Mingjie Liu;Mingjie Liu

  • Oxygenated monolayer carbon nitride for excellent photocatalytic hydrogen evolution and external quantum efficiency

    Xiaojie She;Jingjie Wu;Jun Zhong;Hui Xu;Hui Xu

  • Self-optimizing, highly surface-active layered metal dichalcogenide catalysts for hydrogen evolution

    Yuanyue Liu;Yuanyue Liu;Jingjie Wu;Ken P. Hackenberg;Jing Zhang

  • Self-assembled synthesis of defect-engineered graphitic carbon nitride nanotubes for efficient conversion of solar energy

    Zhao Mo;Hui Xu;Zhigang Chen;Xiaojie She

  • Facile Synthesis of Single Crystal Vanadium Disulfide Nanosheets by Chemical Vapor Deposition for Efficient Hydrogen Evolution Reaction

    Jiangtan Yuan;Jingjie Wu;Will J. Hardy;Philip Loya

  • 2D heterostructure comprised of metallic 1T-MoS2/Monolayer O-g-C3N4 towards efficient photocatalytic hydrogen evolution

    Hui Xu;Hui Xu;Jianjian Yi;Xiaojie She;Qin Liu

  • Emerging Carbon-Based Heterogeneous Catalysts for Electrochemical Reduction of Carbon Dioxide into Value-Added Chemicals.

    Jingjie Wu;Tiva Sharifi;Tiva Sharifi;Ying Gao;Tianyu Zhang

  • Self-optimizing layered hydrogen evolution catalyst with high basal-plane activity

    Yuanyue Liu;Jingjie Wu;Ken P. Hackenberg;Jing Zhang

  • Unveiling Active Sites for the Hydrogen Evolution Reaction on Monolayer MoS2

    Jing Zhang;Jingjie Wu;Hua Guo;Weibing Chen

  • Nitrogen-Doped Graphene with Pyridinic Dominance as a Highly Active and Stable Electrocatalyst for Oxygen Reduction.

    Jingjie Wu;Lulu Ma;Ram Manohar Yadav;Yingchao Yang

  • Electrochemical Reduction of Carbon Dioxide I. Effects of the Electrolyte on the Selectivity and Activity with Sn Electrode

    Jingjie Wu;Frank G. Risalvato;Fu-Sheng Ke;P. J. Pellechia

  • NBOH Site‐Activated Graphene Quantum Dots for Boosting Electrochemical Hydrogen Peroxide Production

    Unknown

  • Improving the Catalytic Activity of Carbon‐Supported Single Atom Catalysts by Polynary Metal or Heteroatom Doping

    Mengmeng Fan;Jiewu Cui;Jingjie Wu;Robert Vajtai

  • Solvothermal synthesis of metallic 1T-WS 2 : A supporting co-catalyst on carbon nitride nanosheets toward photocatalytic hydrogen evolution

    Jianjian Yi;Xiaojie She;Yanhua Song;Mao Mao

  • Electrochemical reduction of carbon dioxide III. The role of oxide layer thickness on the performance of Sn electrode in a full electrochemical cell

    Jingjie Wu;Frank G. Risalvato;Shuguo Ma;Xiao-Dong Zhou

Frequent Co-Authors

Pulickel M. Ajayan
Pulickel M. Ajayan Rice University
Hui Xu
Hui Xu Jiangsu University
Robert Vajtai
Robert Vajtai Rice University
Jun Lou
Jun Lou Rice University
Yucheng Wu
Yucheng Wu Hefei University of Technology
Huaming Li
Huaming Li Jiangsu University
Yanhua Song
Yanhua Song Jiangsu University of Science and Technology
Boris I. Yakobson
Boris I. Yakobson Rice University
Jianfeng Shen
Jianfeng Shen Fudan University
Chandra Sekhar Tiwary
Chandra Sekhar Tiwary Indian Institute of Technology Kharagpur

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