World's Best Scientists 2026 revealed!

D-Index & Metrics

Electronics and Electrical Engineering

D-Index
65
Citations
13395
World Ranking
1240
National Ranking
216

Overview

Shijie Cheng is affiliated with Huazhong University of Science and Technology in China and focuses primarily on research within the field of engineering. Their work spans several specialized subfields, including electrical and electronic engineering, automotive engineering, materials chemistry, mechanical engineering, and electronic, optical and magnetic materials.

The scientist's research interests concentrate on various aspects of battery technologies and materials. Key topics of their work include:

  • Advancements in Battery Materials
  • Advanced Battery Materials and Technologies
  • Advanced Battery Technologies Research
  • Thermal Expansion and Ionic Conductivity
  • Extraction and Separation Processes
  • Supercapacitor Materials and Fabrication

Cheng has contributed extensively to academic literature with publications across well-known venues. Frequent publication outlets for their research include:

  • Chemical Engineering Journal
  • Energy Storage Materials
  • Advanced Functional Materials
  • Journal of Materials Chemistry A
  • Nano Energy

Recent significant papers authored by Cheng include:

  • Surface-dominated storage of heteroatoms-doping hard carbon for sodium-ion batteries (2020), published in Energy Storage Materials
  • LiNbO3-coated LiNi0.7Co0.1Mn0.2O2 and chlorine-rich argyrodite enabling high-performance solid-state batteries under different temperatures (2021), published in Energy Storage Materials
  • Codoped porous carbon nanofibres as a potassium metal host for nonaqueous K-ion batteries (2022), published in Nature Communications
  • Balanced solvation/de-solvation of electrolyte facilitates Li-ion intercalation for fast charging and low-temperature Li-ion batteries (2022), published in Nano Energy
  • Unraveling electrochemical stability and reversible redox of Y-Doped Li 2ZrCl 6 solid electrolytes (2023), published in Energy Material Advances

Their collaborative network includes frequent co-authors such as Jia Xie, Chuang Yu, Ziqi Zeng, Chaochao Wei, and Linfeng Peng, reflecting ongoing cooperative research efforts.

Best Publications

  • Delay-Dependent Stability for Load Frequency Control With Constant and Time-Varying Delays

    L. Jiang;W. Yao;Q. H. Wu;J. Y. Wen

  • Wide-Area Damping Controller of FACTS Devices for Inter-Area Oscillations Considering Communication Time Delays

    Wei Yao;L. Jiang;Jinyu Wen;Q. H. Wu

  • Probabilistic Load Flow Method Based on Nataf Transformation and Latin Hypercube Sampling

    Yan Chen;Jinyu Wen;Shijie Cheng

  • Advanced Low-Cost, High-Voltage, Long-Life Aqueous Hybrid Sodium/Zinc Batteries Enabled by a Dendrite-Free Zinc Anode and Concentrated Electrolyte.

    Wei Li;Kangli Wang;Min Zhou;Houchao Zhan

  • Delay-Dependent Stability Analysis of the Power System With a Wide-Area Damping Controller Embedded

    W Yao;L Jiang;Q H Wu;J Y Wen

  • Impact of Power Grid Strength and PLL Parameters on Stability of Grid-Connected DFIG Wind Farm

    Ju Liu;Wei Yao;Jinyu Wen;Jiakun Fang

  • Pathway toward carbon-neutral electrical systems in China by mid-century with negative CO2 abatement costs informed by high-resolution modeling

    Xinyu Chen;Xinyu Chen;Yaxing Liu;Qin Wang;Jiajun Lv

  • Wide-Area Damping Controller for Power System Interarea Oscillations: A Networked Predictive Control Approach

    Wei Yao;Lin Jiang;Jinyu Wen;Qing Hua Wu

  • Liquid Metal Electrodes for Energy Storage Batteries

    Haomiao Li;Huayi Yin;Kangli Wang;Shijie Cheng

  • Optimal coordinated voltage control for power system voltage stability

    J.Y. Wen;Q.H. Wu;D.R. Turner;S.J. Cheng

  • Impedance Modeling and Stability Analysis of Grid-Connected DFIG-Based Wind Farm With a VSC-HVDC

    Kun Sun;Wei Yao;Jiakun Fang;Xiaomeng Ai

  • Controllable construction of 3D-skeleton-carbon coated Na3V2(PO4)3 for high-performance sodium ion battery cathode

    Qing Zhang;Wei Wang;Yujiao Wang;Pingyuan Feng

  • LiNbO3-coated LiNi0.7Co0.1Mn0.2O2 and chlorine-rich argyrodite enabling high-performance solid-state batteries under different temperatures

    Linfeng Peng;Haotian Ren;Junzhao Zhang;Shaoqing Chen

  • Optimal location and parameter setting of UPFC for enhancing power system security based on Differential Evolution algorithm

    Husam I. Shaheen;Ghamgeen I. Rashed;S.J. Cheng

  • TiS2 as an Advanced Conversion Electrode for Sodium-Ion Batteries with Ultra-High Capacity and Long-Cycle Life.

    Hongwei Tao;Min Zhou;Ruxing Wang;Kangli Wang

  • Experimental design and theoretical calculation for sulfur-doped carbon nanofibers as a high performance sodium-ion battery anode

    Qianzheng Jin;Wei Li;Kangli Wang;Pingyuan Feng

  • A nonlinear variable structure stabilizer for power system stability

    Yijia Cao;Lin Jiang;Shijie Cheng;Deshu Chen

  • Integrated Intercalation‐Based and Interfacial Sodium Storage in Graphene‐Wrapped Porous Li4Ti5O12 Nanofibers Composite Aerogel

    Chaoji Chen;Henghui Xu;Tengfei Zhou;Zaiping Guo

  • Home network power-line communication signal processing based on wavelet packet analysis

    H. He;Shijie Cheng;Youbing Zhang;J. Nguimbis

  • High Performance Liquid Metal Battery with Environmentally Friendly Antimony–Tin Positive Electrode

    Haomiao Li;Kangli Wang;Shijie Cheng;Kai Jiang

  • Improved synergetic excitation control for transient stability enhancement and voltage regulation of power systems

    Ping Zhao;Ping Zhao;Wei Yao;Jinyu Wen;L. Jiang

  • Delay-dependent stability for load frequency control with constant and time-varying delays

    L. Jiang;W. Yao;J. Y. Wen;S. J. Cheng

Frequent Co-Authors

Jinyu Wen
Jinyu Wen Huazhong University of Science and Technology
Lin Jiang
Lin Jiang University of Liverpool
Jiakun Fang
Jiakun Fang Huazhong University of Science and Technology
Haibo He
Haibo He University of Rhode Island
Xinghuo Yu
Xinghuo Yu RMIT University
Li Ren
Li Ren South China University of Technology
Qinghua Wu
Qinghua Wu South China University of Technology
Yunhe Hou
Yunhe Hou University of Hong Kong
Xiaomeng Ai
Xiaomeng Ai Huazhong University of Science and Technology
Zhe Chen
Zhe Chen Aalborg University

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