World's Best Scientists 2026 revealed!
Award Badge
Rising Stars
2025

D-Index & Metrics

Rising Stars

D-Index
69
Citations
15335
World Ranking
86
National Ranking
27

Materials Science

D-Index
76
Citations
19877
World Ranking
3306
National Ranking
1054

Engineering and Technology

D-Index
76
Citations
19854
World Ranking
712
National Ranking
123

Research.com Recognitions

  • 2025 - Research.com Rising Stars Award

Overview

Guojin Liang is a researcher affiliated with the City University of Hong Kong in China. Their scientific work centers primarily on engineering and materials science, with a strong focus on electrical and electronic engineering, materials chemistry, and renewable energy, sustainability, and the environment. They have contributed extensively to fields related to automotive engineering and electronic, optical, and magnetic materials.

Their research covers a broad range of topics, including:

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

Their publication record includes significant work in reputable academic journals, particularly in areas pertaining to energy storage and battery technologies. Frequent publication venues for their work include:

  • ACS Nano
  • Advanced Energy Materials
  • Advanced Materials
  • Nature Communications
  • Angewandte Chemie International Edition

Notable recent papers authored or co-authored by Guojin Liang include:

  • MXene chemistry, electrochemistry and energy storage applications, 2022, Nature Reviews Chemistry
  • Zwitterionic Sulfobetaine Hydrogel Electrolyte Building Separated Positive/Negative Ion Migration Channels for Aqueous Zn-MnO2 Batteries with Superior Rate Capabilities, 2020, Advanced Energy Materials
  • Insight on Organic Molecules in Aqueous Zn-Ion Batteries with an Emphasis on the Zn Anode Regulation, 2022, Advanced Energy Materials
  • Non-metallic charge carriers for aqueous batteries, 2020, Nature Reviews Materials
  • Halogenated Ti3C2 MXenes with Electrochemically Active Terminals for High-Performance Zinc Ion Batteries, 2021, ACS Nano

Throughout their career, Guojin Liang has collaborated frequently with several researchers, including:

  • Chunyi Zhi
  • Zhaodong Huang
  • Xinliang Li
  • Qi Yang
  • Ze Chen

Best Publications

  • MXene chemistry, electrochemistry and energy storage applications

    Unknown

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

    Donghong Wang;Lufeng Wang;Guojin Liang;Hongfei Li

  • A flexible rechargeable aqueous zinc manganese-dioxide battery working at -20 °c

    Funian Mo;Guojin Liang;Qiangqiang Meng;Zhuoxin Liu

  • Do Zinc Dendrites Exist in Neutral Zinc Batteries: A Developed Electrohealing Strategy to In Situ Rescue In-Service Batteries.

    Qi Yang;Guojin Liang;Ying Guo;Zhuoxin Liu

  • Insight on Organic Molecules in Aqueous Zn‐Ion Batteries with an Emphasis on the Zn Anode Regulation

    Unknown

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

    Hongfei Li;Zhuoxin Liu;Guojin Liang;Yang Huang

  • Zwitterionic Sulfobetaine Hydrogel Electrolyte Building Separated Positive/Negative Ion Migration Channels for Aqueous Zn-MnO 2 Batteries with Superior Rate Capabilities

    Funian Mo;Ze Chen;Guojin Liang;Donghong Wang

  • Super‐Stretchable Zinc–Air Batteries Based on an Alkaline‐Tolerant Dual‐Network Hydrogel Electrolyte

    Longtao Ma;Shengmei Chen;Donghong Wang;Qi Yang

  • Non-metallic charge carriers for aqueous batteries

    Guojin Liang;Funian Mo;Xiulei Ji;Chunyi Zhi

  • Efficient Ammonia Electrosynthesis and Energy Conversion through a Zn‐Nitrate Battery by Iron Doping Engineered Nickel Phosphide Catalyst

    Unknown

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

    Hongfei Li;Qi Yang;Funian Mo;Guojin Liang

  • Single-Site Active Iron-Based Bifunctional Oxygen Catalyst for a Compressible and Rechargeable Zinc-Air Battery.

    Longtao Ma;Shengmei Chen;Zengxia Pei;Yan Huang

  • Halogenated Ti3C2 MXenes with Electrochemically Active Terminals for High-Performance Zinc Ion Batteries.

    Mian Li;Xinliang Li;Guifang Qin;Kan Luo

  • Engineering hosts for Zn anode in aqueous Zn-ion batteries

    Unknown

  • An Overview of Fiber-Shaped Batteries with a Focus on Multifunctionality, Scalability, and Technical Difficulties

    Funian Mo;Guojin Liang;Zhaodong Huang;Hongfei Li

  • Gradient fluorinated alloy to enable highly reversible Zn-metal anode chemistry

    Unknown

  • Initiating Hexagonal MoO3 for Superb-Stable and Fast NH4+ Storage Based on Hydrogen Bond Chemistry.

    Guojin Liang;Yanlei Wang;Zhaodong Huang;Funian Mo

  • A Wholly Degradable, Rechargeable Zn-Ti3C2 MXene Capacitor with Superior Anti-Self-Discharge Function.

    Qi Yang;Zhaodong Huang;Xinliang Li;Zhuoxin Liu

  • Activating the I0/I+ redox couple in an aqueous I2–Zn battery to achieve a high voltage plateau

    Xinliang Li;Mian Li;Zhaodong Huang;Guojin Liang

  • Grafted MXene/polymer electrolyte for high performance solid zinc batteries with enhanced shelf life at low/high temperatures

    Ze Chen;Xinliang Li;Donghong Wang;Qi Yang

  • Electrochemical nitrate reduction in acid enables high-efficiency ammonia synthesis and high-voltage pollutes-based fuel cells

    Unknown

  • Toward a Practical Zn Powder Anode: Ti3C2Tx MXene as a Lattice-Match Electrons/Ions Redistributor.

    Xinliang Li;Qing Li;Yue Hou;Qi Yang

  • 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

  • Calendar Life of Zn Batteries Based on Zn Anode with Zn Powder/Current Collector Structure

    Qing Li;Yanbo Wang;Funian Mo;Donghong Wang

  • A soft yet device-level dynamically super-tough supercapacitor enabled by an energy-dissipative dual-crosslinked hydrogel electrolyte

    Zhuoxin Liu;Guojin Liang;Yuexing Zhan;Hongfei Li

  • An Intrinsically Self-Healing NiCo||Zn Rechargeable Battery with a Self-Healable Ferric-Ion-Crosslinking Sodium Polyacrylate Hydrogel Electrolyte

    Yan Huang;Jie Liu;Jiaqi Wang;Mengmeng Hu

Frequent Co-Authors

Chunyi Zhi
Chunyi Zhi University of Hong Kong
Qi Yang
Qi Yang Beijing University of Chemical Technology
Donghong Wang
Donghong Wang Anhui University of Technology
Zhaodong Huang
Zhaodong Huang City University of Hong Kong
Xinliang Li
Xinliang Li Zhengzhou University
Hongfei Li
Hongfei Li City University of Hong Kong
Longtao Ma
Longtao Ma South China University of Technology
Zhuoxin Liu
Zhuoxin Liu Shenzhen University
Zijie Tang
Zijie Tang City University of Hong Kong
Jun Fan
Jun Fan City University of Hong Kong

If you think any of the details on this page are incorrect, let us know.

Report an issue

We appreciate your kind effort to assist us to improve this page, it would be helpful providing us with as much detail as possible in the text box below:

Related Online Degrees & Career Pathways

Exploring online degrees can open up diverse opportunities beyond traditional engineering and technology roles. For those interested in the business side of athletics, the online sports management degree provides a pathway into sports administration, marketing, and event coordination.

If you’re looking to impact the built environment, an online masters in urban planning can help you specialize in city planning and sustainable development. This degree opens doors to government, private sector, and non-profit careers shaping the future of urban spaces.

Time-sensitive learners might consider a 6 months masters degree, which allows you to accelerate your professional qualifications and enter the workforce sooner. These programs offer both flexibility and speed for busy professionals.

Additionally, acquiring certifications that pay well can enhance your resume and open new career avenues, often with a shorter time commitment compared to traditional degrees. This option suits those who want to upskill quickly for high-demand technology-related roles.

Best Scientists Citing Guojin Liang

Trending Scientists

Recently Published Articles