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导师简介--梁子辉

日期: 2025-04-01      阅读:


姓名:梁子辉

学历:博士

职称/职务:讲师,硕士生导师

学科专业:材料科学

招生专业:材料科学与工程,纺织科学与工程,材料与化工(专硕)

联系方式:zhliang@wtu.edu.cn

学习及工作经历:

2010.09-2014.06  湖北工程学院 化学与材料科学学院 学士

2014.09-2017.06  湖北大学 材料科学与工程学院 硕士

2017.09-2020.06  湖北大学 材料科学与工程学院 博士

2020.07-2022.06  湖北大学 材料科学与工程学院 博士后

2022.07–至今   武汉纺织大学 技术研究院 讲师

2024.09-至今   浙江大学 浣江实验室 访学

研究方向:

1. 废弃纺织品的资源回收及高附加值再利用

2. 力、光、电、热多场耦合功能性传感纤维材料与器件

3. 无机-有机杂化材料、柔性电子、仿生材料与器件

承担项目与课题:

1. 湖北省自然科学基金一般项目,青年基金,在研,主持

2. 武汉纺织大学青年人才项目培育基金,在研,主持

3. 教育部/湖北省重点实验室开放课题基金3项,结题, 主持

4. 国家自然科学基金委员会面上项目----52373085,在研,参与

5. 科技部国家重点研发计划----2019YFE0107100,结题,参与

第一作者/通讯作者发表的论文(部分):

1. Z.H. Liang, J. Cao, Z. Zhou, L. Ren, H. Wu, Z.   Wang, C.H. Yi, D. Yang*, K. Wang*, C. Wu*, Molecular sublimation enables   2D-3D transformation of orientational FAPbI3 perovskites, Nature   Synthesis, 2025, 4, 347-358.

2. Z.H. Liang, C. Wu*, Dimensional phase transi-tion   for the controlled growth of α-FAPbI3 perovskite films, Nature   Synthesis, 2025, 4, 286-287.

3. Q. Cui, J. Yu, J. Li, C. Zeng, F. Bu, X.   Liao, H. Hu, Z.H. Liang*, C. Chen*, C.H. Yi*, Efficient   Recycling of Glucose from Cellulose in Textiles Waste by Solid Catalysts, Biomacromolecules,   2025, 26, 1, 591-600

4. Z.H. Liang, X.H. Liao, H. Zong,   X. Zeng, H. Liu, C. Wu, K. Keremane, B. Poudel, J. Yin*, K. Wang*, J. Qian*, Pioneering   the future of dentistry: AI-Driven 3D bioprinting for next-generation   clinical applications, Translational Dental Research, 2025, 1,   100005.

5. C. Zeng†, H. Wang†, F. Bu, Q. Cui, J.   Li, Z.H. Liang*, L. Zhao*, C.H. Yi*, A regenerated cellulose   fiber with high mechanical properties for temperature-adaptive thermal   management, International Journal of Biological Macromolecules, 2024,   274, 133550.

6. Z. Huang, Y. Zhang,   T. Xing, A. He, Y. Luo, M. Wang, S. Qiao, A. Tong, Z. Shi, X.   Liao, H. Pan*, Z.H. Liang*, F.X. Chen*, W.L. Xu, Advances   in regenerated cellulosic aerogel from waste cotton textile for emerging   multidimensional applications. International Journal of Biological Macromolecules, 2024, 270, 132462.

7. N. Yu, B. Cheng, Y. Liu, W. Wu, R.K.Y.   Li, Z.H. Liang*, F. Cheng*, H. Zhao*, High-Strength and   High-Toughness Supramolecular Materials for Self-Healing Triboelectric   Nanogenerator, Small, 2024, 2405700.

8. A.N. He#, T.H. Xing#,   Z.H. Liang#, Y.X. Luo, Y. Zhang, M.Q. Wang,   Z.Y. Huang, J. Bai, L.Y. Wu, Z.C. Shi, H.M. Zuo, W.S. Zhang, F.X. Chen, W.L.   Xu. Advanced Aramid Fibrous Materials: Fundamentals, Advances, and Beyond. Advanced   Fiber Materials, 2023, 6, 3-35.

9. Z.H. Liang, S. Yang, T. Yuan, B.W. Jin, Y.D.   Ming, F.X. Chen, S.M. Wang, J. Li*, C.C. Wu*. Distinct Reaction Route toward   High Photovoltaic Performance: Perovskite Salts versus Crystals. ACS   Applied Energy Materials, 2023, 6, 2247-2256

10. Z.H. Liang, B.W. Jin, J.G. Cao, F.X. Chen, J.   Li,S.M. Wang,*, C.C. Wu*. Chemi-Mechanically Peeling the Unstable Surface   States of α-FAPbI3. Small, 2022, 18, 2204742.

11. B.W. Jin, Y.D. Ming, Z.X. Wu, J.G. Cao,   Y.X. Liu, Y.Q. Zhu, S.M. Wang*, Z.H. Liang*, C.C. Wu*. Silk   Fibroin Induced Homeotropic Alignment of Perovskite Crystals toward High   Efficiency and Stability, Nano Energy, 2022, 94, 106936.

12. Z.H. Liang, Y.C. Hou, Y.D. Ming, Z.Y. Wei, S.S.   Priya, K. Wang*, C.C. Wu*.  Paradigm   Ink with Temporal-Controllable Processing-Window for Perovskite Module. Journal   of Materials Chemistry A, 2022, 10 , 14989-14999.

13. Z.H. Liang, Y.C. Hou, Jing Li, S.M. Wang, Jin   Li*, K. Wang*, C.C. Wu*. Unraveling the irreversible transformation by   nucleophilic substitution: A hint for fully transparent perovskite. EcoMat,   2022: e12211.

14. C.H. Duan#, Z.H. Liang#,   J.G. Cao, B.W. Jin, Y.D. Ming, S.M. Wang, B.H. Ma, T. Ye*, C.C. Wu*.   Balancing Lattice Strain by Embedded Ionic Liquid for the Stabilization of   Formamidinium-Based Perovskite Solar Cells. ACS Applied Materials   Interface,2022, 14, 43298-43307.

15. Z.H. Liang, Z.Z. Zhou, J. Li, S.L. Zhang, B.H.   Dong*, L. Zhao, C.C. Wu, HY. Yang, Fengxiang Chen*, Shimin Wang*.   Multi-Functional Silk Fibers/Fabrics with a Negligible Impact on Comfortable   and Wearability Properties for Bulk Fiber. Chemical Engineering Journal,   2021, 415, 128980.