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Rising Stars
2025

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Rising Stars

D-Index
40
Citations
9814
World Ranking
638
National Ranking
225

Engineering and Technology

D-Index
44
Citations
11638
World Ranking
5692
National Ranking
1097

Research.com Recognitions

  • 2025 - Research.com Rising Stars Award

Overview

Zijie Tang is affiliated with the City University of Hong Kong in China. Their research encompasses a range of topics primarily focused on advanced battery technologies and related materials science.

The main fields of study for Zijie Tang include:

  • Engineering
  • Materials Science

Within these broader disciplines, Tang's work spans several subfields such as:

  • Electrical and Electronic Engineering
  • Materials Chemistry
  • Renewable Energy, Sustainability and the Environment
  • Electronic, Optical and Magnetic Materials
  • Molecular Biology

The primary topics of their research focus on battery materials and energy conversion technologies, including:

  • Advanced battery technologies research
  • Advanced Battery Materials and Technologies
  • Advancements in Battery Materials
  • Corrosion Behavior and Inhibition
  • Supercapacitor Materials and Fabrication
  • Electrocatalysts for Energy Conversion
  • Conducting polymers and applications

Zijie Tang has published extensively in various scientific journals. Frequent publication venues include:

  • Advanced Materials
  • ACS Nano
  • Energy Storage Materials
  • Energy & Environmental Science
  • Angewandte Chemie International Edition

Among recent significant papers are:

  • "Hydrogen-Free and Dendrite-Free All-Solid-State Zn-Ion Batteries," 2020, Advanced Materials
  • "Phase Transition Induced Unusual Electrochemical Performance of V2CTX MXene for Aqueous Zinc Hybrid-Ion Battery," 2020, ACS Nano
  • "Regulating the electrochemical reduction kinetics by the steric hindrance effect for a robust Zn metal anode," 2023, Energy & Environmental Science
  • "Cross-linked polyaniline for production of long lifespan aqueous iron

Best Publications

  • Advanced rechargeable zinc-based batteries: Recent progress and future perspectives

    Hongfei Li;Longtao Ma;Cuiping Han;Zifeng Wang

  • An extremely safe and wearable solid-state zinc ion battery based on a hierarchical structured polymer electrolyte

    Hongfei Li;Cuiping Han;Yan Huang;Yang Huang

  • A Superior δ-MnO2 Cathode and a Self-Healing Zn-δ-MnO2 Battery.

    Donghong Wang;Lufeng Wang;Guojin Liang;Hongfei Li

  • Hydrogel Electrolytes for Flexible Aqueous Energy Storage Devices

    Zifeng Wang;Hongfei Li;Zijie Tang;Zhuoxin Liu

  • Initiating a mild aqueous electrolyte Co3O4/Zn battery with 2.2 V-high voltage and 5000-cycle lifespan by a Co(III) rich-electrode

    Longtao Ma;Shengmei Chen;Hongfei Li;Zhaoheng Ruan

  • Waterproof and Tailorable Elastic Rechargeable Yarn Zinc Ion Batteries by a Cross-Linked Polyacrylamide Electrolyte

    Hongfei Li;Zhuoxin Liu;Guojin Liang;Yang Huang

  • An Intrinsically Stretchable and Compressible Supercapacitor Containing a Polyacrylamide Hydrogel Electrolyte

    Yan Huang;Ming Zhong;Ming Zhong;Fukuan Shi;Xiaoying Liu

  • Hydrogen-Free and Dendrite-Free All-Solid-State Zn-Ion Batteries.

    Longtao Ma;Shengmei Chen;Na Li;Zhuoxin Liu

  • MoS2 nanosheets with expanded interlayer spacing for rechargeable aqueous Zn-ion batteries

    Hongfei Li;Qi Yang;Funian Mo;Guojin Liang

  • Evaluating Flexibility and Wearability of Flexible Energy Storage Devices

    Hongfei Li;Zijie Tang;Zhuoxin Liu;Chunyi Zhi

  • Mn3O4 nanoparticles on layer-structured Ti3C2 MXene towards the oxygen reduction reaction and zinc–air batteries

    Qi Xue;Zengxia Pei;Yan Huang;Minshen Zhu

  • Flexible Waterproof Rechargeable Hybrid Zinc Batteries Initiated by Multifunctional Oxygen Vacancies-Rich Cobalt Oxide.

    Longtao Ma;Shengmei Chen;Zengxia Pei;Hongfei Li

  • Towards wearable electronic devices: A quasi-solid-state aqueous lithium-ion battery with outstanding stability, flexibility, safety and breathability

    Zhuoxin Liu;Hongfei Li;Minshen Zhu;Yan Huang

  • Phase Transition Induced Unusual Electrochemical Performance of V2CTX MXene for Aqueous Zinc Hybrid-Ion Battery.

    Xinliang Li;Mian Li;Qi Yang;Hongfei Li

  • A Nanofibrillated Cellulose/Polyacrylamide Electrolyte-Based Flexible and Sewable High-Performance Zn-MnO2 Battery with Superior Shear Resistance.

    Donghong Wang;Hongfei Li;Zhuoxin Liu;Zijie Tang

  • A Highly Elastic and Reversibly Stretchable All-Polymer Supercapacitor.

    Yukun Wang;Yukun Wang;Feng Chen;Zhuoxin Liu;Zijie Tang

  • Recent Progress of MXene-Based Nanomaterials in Flexible Energy Storage and Electronic Devices

    Qi Yang;Yukun Wang;Xinliang Li;Hongfei Li

  • A mechanically durable and device-level tough Zn-MnO2 battery with high flexibility

    Zhuoxin Liu;Donghong Wang;Zijie Tang;Guojin Liang

  • A Universal Principle to Design Reversible Aqueous Batteries Based on Deposition–Dissolution Mechanism

    Guojin Liang;Funian Mo;Hongfei Li;Zijie Tang

  • Highly anisotropic, multichannel wood carbon with optimized heteroatom doping for supercapacitor and oxygen reduction reaction

    Zijie Tang;Zengxia Pei;Zifeng Wang;Hongfei Li

Frequent Co-Authors

Chunyi Zhi
Chunyi Zhi University of Hong Kong
Hongfei Li
Hongfei Li City University of Hong Kong
Zhuoxin Liu
Zhuoxin Liu Shenzhen University
Longtao Ma
Longtao Ma South China University of Technology
Qi Yang
Qi Yang Beijing University of Chemical Technology
Yan Huang
Yan Huang Harbin Institute of Technology
Guojin Liang
Guojin Liang City University of Hong Kong
Zengxia Pei
Zengxia Pei University of Sydney
Minshen Zhu
Minshen Zhu Chemnitz University of Technology
Yang Huang
Yang Huang Shenzhen University

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