Skip to main content Start main content

Academic Staff

Dr Liang Wenhao
PolyU Scholars Hub

Dr Liang Wenhao

Research Assistant Professor

Research Overview

Our research focuses on the design and development of new nanomaterials and nanocomposites for the applications in clean and renewable energy, including rechargeable battery, solar cell, and photoelectrocatalysis.

Research Interests

  • Rechargeable Battery
  • Solar Cell
  • Photoelectrocatalysis

Education and Academic Qualifications

  • Bachelor of Applied Chemistry, Zhongyuan University of Technology
  • Master of Philosophy, Xinjiang University
  • Doctor of Philosophy, University of Science and Technology of China

Academic and Professional Experience

  • Member, The Chinese Institute of Electronics (2025 – Present)
  • Young Editorial Board Member, Nano-Micro Letters (2025 - Present)
  • Young Editorial Board Member, Engineered Science (2025 - Present)
  • Young Editorial Board Member, EcoEnergy (2025 - Present)
  • Young Editorial Board Member, Carbon Neutralization (2025 - Present)
  • Young Editorial Board Member, Chinese Chemical Letters (2025 - Present)
  • Young Editorial Board Member, Sustainable Engineering Novit (2025 - Present)
  • Young Editorial Board Member, Clean Energy Science and Technology (2025 - Present)
  • Young Editorial Board Member, 精细化工 (2025 - Present)
  • Member, Chinese Chemical Society (2024 – Present)

Achievements

  • 刘浪、唐亚昆、梁文浩,一种薄壁无定型碳纳米管及其制备方法和应用,CN PatentZL 201910854951.8 (2019)
  • 梁文浩,陈涛,朱长飞,一种高容量兼具长循环寿命的钒基水系锌离子电池正极材料的制备方法与应用,CN Patent CN202310887333.X (2023)
  1. Gu, Y.; Liang, W.; Wang, H.; Chen, T. Hydrothermal Deposition and Further Simulative Optimization of Device Achieving Efficiency Close 19% for AgSbS2 Solar Cell. Small 2025, 21, 2504888. DOI: https://doi.org/10.1002/smll.202504888
  2. Chen, H.; Qiu, Y.; Cai, Z.; Liang, W.; Liu, L.; Li, M.; Hou, X.; Chen, F.; Zhou, X.; Cheng, T.; He, L.; Wang, J.; Zhang, X.; Dou, S.; Li, L. Topological Insulator Heterojunction with Electric Dipole Domain to Boost Polysulfide Conversion in Lithium-Sulfur Batteries. Angewandte Chemie International Edition 2025, 64, e202423357. DOI: https://doi.org/10.1002/anie.202423357
  3. Liang, W.; Che, Y.; Cai, Z.; Tang, R.; Ma, Z.; Zheng, X.; Wu, X.; Li, J.; Jin, H.; Zhu, C.; Chen, T. Surface Decoration Manipulating Zn2+/H+ Carrier Ratios for Hyperstable Aqueous Zinc Ion Battery Cathode. Advanced Functional Materials 2024, 34, 2304798. DOI: https://doi.org/10.1002/adfm.202304798
  4. Gu, Y.; Liang, W.; Che, Y.; Cai, Z.; Xiao, P.; Yang, J.; Zang, R.; Wang, H.; Wu, X.; Chen, T. Solvent Annealing Enabling Reconstruction of Cadmium Sulfide Film for Improved Heterojunction Quality and Photovoltaic Performance of Antimony Selenosulfide Solar Cells. Advanced Functional Materials 2024, 34, 2311577. DOI: https://doi.org/10.1002/adfm.202311577
  5. Chen, H.; Liu, L.; Gu, Y.; Cai, Z.; Xu, F.; Liang, W.; Hou, X.; Chen, F. The Construction and Mechanism Study of High-Speed Carrier Transport Channel in Gallium Arsenide Homojunction Toward High-Performance Photoelectrochemical Photodetector. Small 2024, 20, 2403791. DOI: https://doi.org/10.1002/smll.202403791
  6. Cai, Z.; Che, B.; Gu, Y.; Xiao, P.; Wu, L.; Liang, W.; Zhu, C.; Chen, T. Active Passivation of Anion Vacancies in Antimony Selenide Film for Efficient Solar Cells. Advanced Materials 2024, 36, 2404826. DOI: https://doi.org/10.1002/adma.202404826
  7. Liang, W.; Rao, D.; Chen, T.; Tang, R.; Li, J.; Jin, H. Zn0.52V2O5−a1.8 H2O Cathode Stabilized by In Situ Phase Transformation for Aqueous Zinc-Ion Batteries with Ultra-Long Cyclability. Angewandte Chemie International Edition 2022, 61, e202207779. DOI: https://doi.org/10.1002/anie.202207779
  8. Liang, W.; Tang, Y.; Liu, L.; Zhu, C.; Sheng, R. Effective Trapping of Polysulfides Using Functionalized Thin-Walled Porous Carbon Nanotubes as Sulfur Hosts for Lithium–Sulfur Batteries. Inorganic Chemistry 2020, 59, 8481–8486. DOI: 10.1021/acs.inorgchem.0c00895
  9. Liang, W.; Tang, Y.; Liu, L.; Gao, Y.; Zeng, X. Physical Forces Inducing Thin Amorphous Carbon Nanotubes Derived from Polymer Nanotube/SiO2 Hybrids with Superior Rate Capability for Lithium-Ion Batteries. ACS Applied Materials & Interfaces 2019, 11, 36985–36990. DOI: 10.1021/acsami.9b13207
  10. Hedong Chen, Liang, W., Guofu Zhou et al. Light Trapping Regulation of Tilted InGaN Nanowire Arrays to Enhance Photoelectrochemical Performance, Carbon Neutralization, 2025, 10.1002/cnl2.70066 (Accepted) 

Your browser is not the latest version. If you continue to browse our website, Some pages may not function properly.

You are recommended to upgrade to a newer version or switch to a different browser. A list of the web browsers that we support can be found here