
姓名:贺耀武 性别: 男 出生年月 : 1984年9月 学系: 化学系
职务:教授
学术兼职: 中国感光学会电致变色专业委员会委会
社会兼职:无
Email: ywhe@pku.edu.cn
联系电话:18565790920
学历简介(可从大学本科写起):
博士研究生(硕博连读) 2008年09月至2013年06月,中国科学院新疆理化技术研究所
本科 2004年09月至2008年 06月 新疆大学
工作经历:
2026年1月至今 汕头大学 教授
2016年7月-2025年12月,北京大学深圳研究生院,助理研究院,副研究员/高级工程师
2014年7月至2016年6月,北京大学深圳研究生院,博士后
2013年09月至2014年03月,清华大学,博士后
2012年04月至2012年12月 法国巴黎第七大学 访问学者
主要研究兴趣:
有机半导体材料,有机电致变色材料及功能器件,功能高分子材料,光引发剂
承担项目:
1) 深圳市智能光电及功能材料中小试基地,深圳市中小试基地认定资项目,中小试基地主任
2) 广东省多维度光电子材料工程技术研究中心,广东省科技厅,工程技术研究中心主任
3) 重2023N 8K超高清显示面板用高性能液晶材料关键技术研发,深圳市科技创新委员会2023年度科技重大专项项,与TCL华星光电技术有限公司联合,执行年限:2024/01/01-2026/12/31,批准经费:60万元
4) 功能性N-型半导体材料的合成及器件探索,深圳市基础研究高等院校稳定资助项目,项目编号:GXWD20201231165807007-20200810111340001,执行年限:2021/01/01-2023/12/31,批准经费:60万元
5) 智能变色窗材料的合成与器件制备及应用探索,深圳市2020年国际科技合作研发项目,GJHZ20190823152011622, 2020/01-2021/12,批准经费:50万
6) 兼具高迁移率与高效率荧光半导体材料的合成及器件研究,广东省基础与应用基础研究基金项目,2019/10-2022/09,项目编号:2020A1515010449,批准经费:10万
7) 基20170101 液晶有机半导体材料及光电性能研究,深圳市基础研究项目(学科布局),项目编号:JCYJ2017041215113961,2017/06-2020/06,批准经费:200万
8) 液晶态有机半导体材料的合成及场效应晶体管研究,国家自然科学基金青年基金,项目批准号:51603003,2017/01-2018/12,批准经费:15万
9) 液晶态有机半导体材料的合成及场效应晶体管研究,中国博士后科学基金,项目编号:2015M570892,2017/01-2018/12,批准经费:5万
10) 红色电致变色材料的设计与合成及其在器件中的应用探索,深圳市基础研究项目(自由探索),项目编号:JCYJ20160331095335232,2016/06-2018/06,批准经费:20万
研究成果:
1. Zhang, Y.; Wang, S.; Xu, T.; Zhang, Q.; Zou, D.; Zeng, L.; Cui, Y.; Liu, X.; He, Y.(*); Meng, H. (*), Sustainable ether electrolyte engineering for all-climate and durable viologen electrochromic devices. Sustain. Mater. Techno. 2026, 47, e01792.
2. Zou, D.; Xu, T.; Li, H.; Zhang, X.; Sun, H.; Rao, Q.; Zhu, M.; Chang, S. (*); He, Y. (*); Meng, H. (*), Enhancing Electrochromic Stability of Triphenylamine-Based Polymers via Monomer Ratio Optimization. ACS Appl. Mater. Interfaces 2025, 17 (14), 21736-21744.
3. Zhu, M.; Cao, S.; Wang, S.; Liu, X.; Wu, X.; Zou, D.; Li, H. (*); He, Y. (*); Meng, H. (*), Unveiling the electrochromic switch: The π spacer’s pivotal role in fluorinated D-A copolymer for high color efficiency and energy-saving smart windows. Nano Energy 2025, 142, 111240.
4. Zheng, X.; Xu, M. (*); Zhu, Y.; Yan, H.; Li, H.; Zhang, X.; Li, X.; Wang, Y.; Wu, Z.; Meng, L.; Chang, S.; He, Y. (*); Meng, H. (*), Molecular Anchoring Strategies for Enhanced Thermal Stability in Organic Field-Effect Transistors. ACS Appl. Mater. Interfaces 2025, 17 (17), 25571-25581.
5. Wu, X.; Zou, D.; Zhang, D. (*); Murtaza, I.; Zhu, M.; Zhu, Y.; He, Y. (*); Meng, H., Electrochromic Triarylamine-Based Polyamides and Their Application in Intelligent Color-Varying Windows. Macromol. Rapid Commun 2025, 46, 2401071.
6. Wu, X.; Zhang, X.; Zhang, D. (*); Murtaza, I.; Zou, D.; Zhu, M.; Zhu, Y.; He, Y. (*); Meng, H. (*), Intelligent color-varying windows: High contrast electrochromic triarylamine-based polyimide devices. Sustain. Mater. Techno. 2025, 43, e01303.
7. Mei, Z.; Zhang, Y.; Sun, S.; He, Y. (*); Meng, H. (*), Triarylamine-based electrochromic materials: From design to multifunctional devices. Chem. Eng. J. 2025, 526, 171341.
8. Mei, Z.; Cai, Y.; Tong, Z.; Zou, D.; Li, H.; Liu, J.; Zhu, M.; Liang, Y.; Meng, H. (*); He, Y. (*), All-in-One Complementary Electrochromism for Ultra-Stable Broadband Smart Windows. ACS Appl. Mater. Interfaces 2025, 17 (48), 65768-65780.
9. Li, H.(#); He, Y. (#,*); Zou, D.; Xu, M.; Liu, J.; Tong, Z.; Zhu, M.; Tang, J.; Xu, T.; Yan, L.; Meng, H. (*), Smart energy-saving windows enabled by transparent-to-black ultra-low voltage polytriphenylamines. Chem. Eng. J. 2025, 526, 170887.
10. Cai, Y.; Lu, K.; Murtaza, I.; Liu, M.; Sun, S.; Mei, Z.; Liu, X.; Xiao, M.; Chang, S. (*); Xu, M. (*); He, Y. (*); Meng, H. (*), High-Performance Electrochromic Polymers Enabled by Side-Chain Engineering for Intelligent Windows and Supercapacitors. Eur. Polym. J. 2025, 228, 113796.
11. Zhang, D. (*); Zheng, X.; Zhao, Y.; Zhao, C.; Huang, F.; He, Y. (*), Theoretical Insights into the Hole Mobility Anisotropy of Heteroarenes and Their Derivatives. J. Phys. Chem. C 2024, 128, 7377−7387.
12. Zhang, D.; Zheng, X.; He, C. (*); He, Y. (*); Meng, H., Enhanced performance in doped micro-nano porous organic thin-film transistors. Appl. Phys. Lett. 2024, 124, 123301.
13. Qi, M.; Zhang, D. (*); Zhu, Y.; Zhao, C.; Li, A.; Huang, F.; He, Y. (*); Meng, H. (*), Anthracene-[1]benzothieno[3,2-b][1]benzothiophene (BTBT) dyad and triads as p-type semiconductors for organic field-effect transistors and phototransistors. J. Mater. Chem. C 2024, 12, 6578-6587.
14. Zhang, D. (*); Zhao, C.; Zheng, X.; Wu, L.; Xu, J.; Zhou, L.; Wong, P. K. J.; Zhang, W.; He, Y. (*), A study on the luminescence properties of high-performance benzothieno[3,2-b][1]benzothiophene based organic semiconductors. Dyes and Pigments 2023, 216, 111359.
15. Xu, M.; Zhao, C.; Meng, Z.; Yan, H.; Chen, H.; Jiang, Z.; Jiang, Z.; Chen, H.; Meng, L.; Hui, W.; Su, Z.; Wang, Y.; Wang, Z.; Wang, J.; Gao, Y. (*); He, Y. (*); Meng, H. (*), Nonvolatile Memory Organic Light‐Emitting Transistors. Adv. Mater. 2023, 35 (48).
16. Xu, H.; Ning, J. (*); Duan, Z.; Deng, B.; Chen, D.; Liu, M.; Li, H.; Cai, Y.; He, Y. (*); Meng, H. (*), Cyclotriphosphonitrile-Based Electroactive Flame-Retardant Polymers for Electrochromic/Supercapacitor Devices. ACS Appl. Polym. Mater. 2023, 5 (11), 9594-9606.
17. Deng, B.; Zhu, Y.; Ali, M. U.; Li, K.; Liu, X.; Zhang, X.; Ning, J.; Hu, Z.; Chen, H.; He, J.; He, Y. (*); Meng, H. (*), Pyrrole-based viologen derivatives with high contrast and magenta color for electrochromic-fluorescent devices. Sol. Energ. Mat. Sol. C 2023, 251, 112149.
18. Zhao, C.; Chen, H.; Ali, M. U.; Yan, C.; Liu, Z.; He, Y. (*); Meng, H. (*), Improving the Performance of Red Organic Light-Emitting Transistors by Utilizing a High-k Organic/Inorganic Bilayer Dielectric. ACS Appl. Mater. Interfaces 2022, 14 (32), 36902-36909.
19. Zhang, X.; Yao, C.; Zhao, J.; Ali, M. U.; Li, A.; Shen, C. K.-F.; Yan, C.; He, Y. (*); Miao, J. (*); Meng, H., Molecular tailoring of trifluoromethyl-substituted conjugated polymers for efficient organic solar cells. Polym. Chem. 2021, 12 (22), 3346-3351.
20. Yu, L.; Shi, M.; Wang, Z.; Xing, X. (*); Umair Ali, M.; He, Y. (*); Meng, H. (*), Tuning the UV/Vis Absorption Spectra of Electrochromic Small Molecular Radicals Through Bridge Modulation. Chemphyschem 2021, 22 (16), 1684-1691.
21. Wang, J.; He, Y. (*); Guo, S.; Ali, M. U.; Zhao, C.; Zhu, Y.; Wang, T.; Wang, Y.; Miao, J.; Wei, G.; Meng, H. (*), Multifunctional Benzo[4,5]thieno[3,2-b]benzofuran Derivative with High Mobility and Luminescent Properties. ACS Appl. Mater. Interfaces 2021, 13 (10), 12250-12258.
22. Fu, T.; Zhao, C. (*); Zhu, Y.; Zhang, P.; He, Y. (*); Meng, H. , Towards the design of ideal electrochromic materials with low driving voltage based on phthalate derivatives. Organ. Electron. 2021, 95, 106189.
23. Chen, W.; Ning, J.; Sun, Y.; Zhou, G.; Murtaza, I.; Shuja, A.; He, Y. (*); Perepichka, I. F(*).; Meng, H. (*), Thiophene-2,5-diesters as electrochromic materials: The effect of ester groups on the device performance and stability. Organ. Electron. 2021, 96, 106188.
24. Wang, Y.; Fang, D.; Fu, T.; Ali, M. U.; Shi, Y.; He, Y. (*); Hu, Z.; Yan, C.; Mei, Z.; Meng, H. (*), Anthracene derivative based multifunctional liquid crystal materials for optoelectronic devices. Mater. Chem. Front. 2020, 4, 3546--3555.
25. Cai, J.; Ali, M. U.; Liu, M.; Zhao, J.; Miao, J. (*); Deng, Y.; Yang, S.; Yan, C.; Xing, G.; He, Y. (*); Meng, H. (*), Ionic-liquid induced enhanced performance of perovskite light-emitting diodes. J. Phys D Appl Phys 2020, 53 (38), 384002.
26. Yin, Y.; Li, W.; Zeng, X.; Xu, P.; Murtaza, I.; Guo, Y.; Liu, Y.; Li, T.; Cao, J.; He, Y. (*); Meng, H. (*), Design Strategy for Efficient Solution-Processable Red Electrochromic Polymers Based on Unconventional 3,6-Bis(dodecyloxy)thieno[3,2-b]thiophene Building Blocks. Macromolecules 2018, 51, 5258-5266.
27. Wang, Y.; Li, W.; Guo, Y.; Cao, J.; Murtaza, I.; Syed, A. S.; He, Y. (*); Meng, H. (*), Recombination Strategy for Processable Ambipolar Electroactive Polymers in Pseudocapacitors. Macromolecules 2018, 51 (14), 5258-5266.
28. He, Y.; Xu, W.; Murtaza, I.; Yao, C.; Zhu, Y.; Li, A.; He, C.; Meng, H., A Chrysene-Based Liquid Crystalline Semiconductor for Organic Thin-Film Transistors. J. Mater. Chem. C 2018, 6, 3683-3689.
29. He, Y.; Guo, S.; He, Y. (*); Murtaza, I.; Li, A.; Zeng, X.; Guo, Y.; Zhao, Y.; Chen, X.; Meng, H. (*), Investigating the Thermal Stability of Organic Thin Film Transistors and Phototransistors Based on [1]Benzothieno[3,2-b][1]benzothiophene Dimers Derivatives. Chem. Eur. J. 2018, 24, 16595-16602.
30. Guo, S.; He, Y. ; Murtaza, I.; Tan, J.; Pan, J.; Guo, Y.; Zhu, Y.; He, Y. (*); Meng, H. (*), Alkoxy Substituted [1]Benzothieno[3,2-b ][1]Benzothiophene Derivative with Improved Performance in Organic Thin Film Transistors. Org. Electron. 2018, 56, 68-75.
31. He, Y.; Xu, W.; Murtaza, I.; Zhang, D.; He, C.; Zhu, Y.; Meng, H., Molecular Phase Engineering of Organic Semiconductors Based On A [1]Benzothieno[3,2-b][1]Benzothiophene Core. RSC Adv. 2016, 6 (97), 95149-95155.
32. He, Y.; Sezen, M.; Zhang, D.; Li, A.; Yan, L.; Yu, H.; He, C.; Goto, O.; Loo, Y.-L.; Meng, H., High Performance OTFTs Fabricated Using a Calamitic Liquid Crystalline Material of 2-(4-Dodecyl phenyl)[1]benzothieno[3,2-b][1]benzothiophene. Adv. Electron. Mater. 2016, 2 (9), 1600179.
33. He, Y.; Dong, C. Z.; Zhao, J. Y.; Ma, L. L.; Li, Y. H.; Aisa, H. A., 1,2,3-Triazole-containing derivatives of rupestonic acid: Click-chemical synthesis and antiviral activities against influenza viruses. Eur. J. Med. Chem. 2014, 76, 245-255.