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Materials Science

D-Index
68
Citations
19719
World Ranking
4789
National Ranking
1475

Overview

Hengxing Ji is affiliated with the University of Science and Technology of China. Their research predominantly focuses on Engineering and Materials Science, with a significant contribution to Electrical and Electronic Engineering and Materials Chemistry. Other subfields include Electronic, Optical and Magnetic Materials, Automotive Engineering, as well as Renewable Energy, Sustainability, and the Environment.

Ji's work concentrates extensively on battery materials and energy technologies. Key research topics include:

  • Advancements in Battery Materials
  • Advanced Battery Materials and Technologies
  • Advanced battery technologies research
  • Supercapacitor Materials and Fabrication
  • Advanced Battery Technologies Research
  • Electrocatalysts for Energy Conversion
  • Graphene research and applications

Among recent publications, notable papers cover developments in lithium storage, battery anodes, sonodynamic sensitizers, and electrochemical energy devices. These include:

  • "Black phosphorus composites with engineered interfaces for high-rate high-capacity lithium storage" (2020, Science)
  • "Solid-Solution-Based Metal Alloy Phase for Highly Reversible Lithium Metal Anode" (2020, Journal of the American Chemical Society)
  • "Piezoelectric Materials as Sonodynamic Sensitizers to Safely Ablate Tumors: A Case Study Using Black Phosphorus" (2020, The Journal of Physical Chemistry Letters)
  • "Recent advances in dual-carbon based electrochemical energy storage devices" (2020, Nano Energy)
  • "Large-area, periodic, and tunable intrinsic pseudo-magnetic fields in low-angle twisted bilayer graphene" (2020, Nature Communications)

Ji frequently collaborates with several co-authors, among them:

  • Hongchang Jin
  • Song Jin
  • Xianghua Kong
  • Huanyu Xie
  • Shuai Xie

Their research has been published multiple times in several prominent scientific journals, with repeated contributions to:

  • Journal of the American Chemical Society
  • Angewandte Chemie International Edition
  • Angewandte Chemie
  • Small
  • Advanced Functional Materials

Best Publications

  • Cobalt in Nitrogen-Doped Graphene as Single-Atom Catalyst for High-Sulfur Content Lithium–Sulfur Batteries

    Zhenzhen Du;Xingjia Chen;Wei Hu;Chenghao Chuang

  • Nanoporous Ni(OH)2 thin film on 3D Ultrathin-graphite foam for asymmetric supercapacitor.

    Junyi Ji;Li Li Zhang;Hengxing Ji;Yang Li

  • Highly Conductive and Porous Activated Reduced Graphene Oxide Films for High-Power Supercapacitors

    Li Li Zhang;Xin Zhao;Xin Zhao;Meryl D. Stoller;Yanwu Zhu;Yanwu Zhu

  • Capacitance of carbon-based electrical double-layer capacitors

    Hengxing Ji;Xin Zhao;Zhenhua Qiao;Jeil Jung;Jeil Jung

  • Enhanced thermal conductivity of phase change materials with ultrathin-graphite foams for thermal energy storage

    Hengxing Ji;Daniel P. Sellan;Michael T. Pettes;Xianghua Kong

  • Black phosphorus composites with engineered interfaces for high-rate high-capacity lithium storage.

    Hongchang Jin;Sen Xin;Sen Xin;Chenghao Chuang;Wangda Li

  • Black Phosphorus Revisited: A Missing Metal-Free Elemental Photocatalyst for Visible Light Hydrogen Evolution.

    Xianjun Zhu;Taiming Zhang;Zijun Sun;Huanlin Chen

  • Nitrogen doping of graphene and its effect on quantum capacitance, and a new insight on the enhanced capacitance of N-doped carbon

    Li Li Zhang;Xin Zhao;Xin Zhao;Hengxing Ji;Meryl D. Stoller

  • Ultrathin graphite foam: a three-dimensional conductive network for battery electrodes.

    Hengxing Ji;Lili Zhang;Michael T. Pettes;Huifeng Li

  • A Hierarchical Carbon Derived from Sponge-Templated Activation of Graphene Oxide for High-Performance Supercapacitor Electrodes.

    Jin Xu;Ziqi Tan;Wencong Zeng;Guanxiong Chen

  • Stretchable Graphene: A Close Look at Fundamental Parameters through Biaxial Straining

    Fei Ding;Hengxing Ji;Yonghai Chen;Andreas Herklotz

  • Thermal transport in three-dimensional foam architectures of few-layer graphene and ultrathin graphite.

    Michael Thompson Pettes;Hengxing Ji;Rodney S. Ruoff;Li Shi

  • Solid-Solution-Based Metal Alloy Phase for Highly Reversible Lithium Metal Anode

    Song Jin;Yadong Ye;Yijie Niu;Yansong Xu

  • Millimeter-Size Single-Crystal Graphene by Suppressing Evaporative Loss of Cu During Low Pressure Chemical Vapor Deposition

    Shanshan Chen;Hengxing Ji;Harry Chou;Qiongyu Li

  • Graphene-Encapsulated Si on Ultrathin-Graphite Foam as Anode for High Capacity Lithium-Ion Batteries

    Junyi Ji;Junyi Ji;Hengxing Ji;Li Li Zhang;Xin Zhao

  • Cu‐Si Nanocable Arrays as High‐Rate Anode Materials for Lithium‐Ion Batteries

    Fei-Fei Cao;Jun-Wen Deng;Sen Xin;Heng-Xing Ji

  • Degradation Chemistry and Stabilization of Exfoliated Few-Layer Black Phosphorus in Water

    Taiming Zhang;Yangyang Wan;Huanyu Xie;Yang Mu

  • Low-Temperature Chemical Vapor Deposition Growth of Graphene from Toluene on Electropolished Copper Foils

    Bin Zhang;Bin Zhang;Wi Hyoung Lee;Richard D Piner;Iskandar Kholmanov

  • Mass production and industrial applications of graphene materials

    Yanwu Zhu;Hengxing Ji;Hui-Ming Cheng;Hui-Ming Cheng;Rodney S Ruoff

  • Advanced 3D Current Collectors for Lithium-Based Batteries.

    Song Jin;Yu Jiang;Hengxing Ji;Yan Yu

Frequent Co-Authors

Rodney S. Ruoff
Rodney S. Ruoff Ulsan National Institute of Science and Technology
Li-Jun Wan
Li-Jun Wan Chinese Academy of Sciences
Yanwu Zhu
Yanwu Zhu University of Science and Technology of China
Lili Zhang
Lili Zhang Agency for Science, Technology and Research
Xin Zhao
Xin Zhao Donghua University
Jin-Song Hu
Jin-Song Hu Chinese Academy of Sciences
Oliver G. Schmidt
Oliver G. Schmidt Chemnitz University of Technology
Yufeng Hao
Yufeng Hao Nanjing University
Hangxun Xu
Hangxun Xu University of Science and Technology of China
Pingwu Du
Pingwu Du University of Science and Technology of China

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