World's Best Scientists 2026 revealed!

Overview

Ke Chu is affiliated with the University of Science and Technology Beijing in China. Their research encompasses a range of topics primarily focused on energy, chemical engineering, and materials science. The scientist's work often intersects with subfields such as renewable energy, sustainability and the environment, catalysis, materials chemistry, computer networks and communications, and organic chemistry.

Their main research themes include ammonia synthesis and nitrogen reduction, advanced photocatalysis techniques, catalytic processes in materials science, hydrogen storage and materials, caching and content delivery, CO2 reduction techniques and catalysts, and electrocatalysts for energy conversion.

Ke Chu has published extensively in various scientific venues. Some of the frequent publication venues include:

  • ACS Nano
  • ACS Sustainable Chemistry & Engineering
  • Advanced Functional Materials
  • Inorganic Chemistry
  • ACS Applied Materials & Interfaces

Among the recent papers by Ke Chu are:

  • "Tandem Electrocatalytic Nitrate Reduction to Ammonia on MBenes," published in 2023 in Angewandte Chemie International Edition
  • "Sub-nm RuOx Clusters on Pd Metallene for Synergistically Enhanced Nitrate Electroreduction to Ammonia," published in 2023 in ACS Nano
  • "Two-dimensional (2D)/2D Interface Engineering of a MoS2/C3N4 Heterostructure for Promoted Electrocatalytic Nitrogen Fixation," published in 2020 in ACS Applied Materials & Interfaces
  • "Unveiling the Synergy of O-Vacancy and Heterostructure over MoO3-x/MXene for N2 Electroreduction to NH3," published in 2021 in Advanced Energy Materials
  • "Filling the nitrogen vacancies with sulphur dopants in graphitic C3N4 for efficient and robust electrocatalytic nitrogen reduction," published in 2020 in Applied Catalysis B: Environmental

Ke Chu has collaborated frequently with several coauthors, including:

  • Yali Guo
  • Kai Chen
  • Shiyao Shang
  • Guike Zhang
  • Peng Shen

Best Publications

  • Thermal conductivity of SPS consolidated Cu/diamond composites with Cr-coated diamond particles

    Ke Chu;Zhaofang Liu;Chengchang Jia;Hui Chen

  • Enhanced strength in bulk graphene-copper composites

    Ke Chu;Chengchang Jia

  • Fabrication and effective thermal conductivity of multi-walled carbon nanotubes reinforced Cu matrix composites for heat sink applications

    Ke Chu;Qingying Wu;Chengchang Jia;Xuebing Liang

  • Two-dimensional (2D)/2D Interface Engineering of a MoS2/C3N4 Heterostructure for Promoted Electrocatalytic Nitrogen Fixation

    Ke Chu;Ya-ping Liu;Yu-biao Li;Ya-li Guo

  • Largely enhanced thermal conductivity of graphene/copper composites with highly aligned graphene network

    Ke Chu;Xiao-hu Wang;Fan Wang;Yu-biao Li

  • Thermal properties of graphene/metal composites with aligned graphene

    Ke Chu;Xiao hu Wang;Yu biao Li;Da jian Huang

  • Efficient electrocatalytic N2 reduction on CoO quantum dots

    Ke Chu;Ya-ping Liu;Yu-biao Li;Hu Zhang

  • Multi-functional Mo-doping in MnO2 nanoflowers toward efficient and robust electrocatalytic nitrogen fixation

    Ke Chu;Ya-ping Liu;Yu-biao Li;Ya-li Guo

  • Interface and mechanical/thermal properties of graphene/copper composite with Mo2C nanoparticles grown on graphene

    Ke Chu;Fan Wang;Yu-biao Li;Xiao-hu Wang

  • Interface design of graphene/copper composites by matrix alloying with titanium

    Ke Chu;Fan Wang;Xiao-hu Wang;Yu-biao Li

  • Fe-doping induced morphological changes, oxygen vacancies and Ce3+–Ce3+ pairs in CeO2 for promoting electrocatalytic nitrogen fixation

    Ke Chu;Yong-hua Cheng;Qing-qing Li;Ya-ping Liu

  • Interface structure and strengthening behavior of graphene/CuCr composites

    Ke Chu;Fan Wang;Yu-biao Li;Xiao-hu Wang

  • Filling the nitrogen vacancies with sulphur dopants in graphitic C3N4 for efficient and robust electrocatalytic nitrogen reduction

    Ke Chu;Qing-qing Li;Ya-ping Liu;Jing Wang

  • Synergistic boron-dopants and boron-induced oxygen vacancies in MnO2 nanosheets to promote electrocatalytic nitrogen reduction

    Ke Chu;Ya-ping Liu;Yong-hua Cheng;Qing-qing Li

  • Thermal Properties of Carbon Nanotube–Copper Composites for Thermal Management Applications

    Ke Chu;Hong Guo;Chengchang Jia;Fazhang Yin

  • Graphene defect engineering for optimizing the interface and mechanical properties of graphene/copper composites

    Ke Chu;Jing Wang;Ya-ping Liu;Zhong-rong Geng

  • Mo-doped SnS2 with enriched S-vacancies for highly efficient electrocatalytic N2 reduction: the critical role of the Mo–Sn–Sn trimer

    Ke Chu;Jing Wang;Ya-ping Liu;Qing-qing Li

  • Improvement of interface and mechanical properties in carbon nanotube reinforced Cu–Cr matrix composites

    Ke Chu;Cheng-chang Jia;Li-kun Jiang;Wen-sheng Li

  • Activating VS2 basal planes for enhanced NRR electrocatalysis: the synergistic role of S-vacancies and B dopants

    Qingqing Li;Yali Guo;Ye Tian;Wuming Liu

  • Effective thermal conductivity of graphene-based composites

    Ke Chu;Cheng-chang Jia;Wen-sheng Li

Frequent Co-Authors

Xuanhui Qu
Xuanhui Qu University of Science and Technology Beijing
Min Liu
Min Liu Central South University
Sang-Il Choi
Sang-Il Choi Kyungpook National University
Yuezhan Feng
Yuezhan Feng Zhengzhou University
Junfeng Xie
Junfeng Xie Shandong Normal University
Jianmin Ma
Jianmin Ma Hunan University
Le Yu
Le Yu Beijing University of Chemical Technology

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