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所在单位:电气工程学院
办公地点:中国西部科技创新港躬行楼3-6094
学位:博士
职称:教授
毕业院校:清华大学
学科: 电气工程
招生学科 电气工程
2025-2026学年仍有硕士招生名额,欢迎2025年考研同学邮件联系,zhouyao@xjtu.edu.cn
2023.06 - 至今 西安交通大学 电气工程学院 教授
2019.08 - 2023.06 美国宾夕法尼亚州立大学 博士后(合作导师:王 庆 教授)
2014.09 - 2019.07 清华大学 电机系 博士 (导师:何金良 教授)
2010.08 - 2014.07 清华大学 电机系 学士
1. 高温储能电介质材料与器件
2. 高性能环保型电工材料与装备
3. 柔性铁电压电材料及其能量转换
国家级青年人才计划 (2023)
西安交通大学“思源学者” (2023)
西安交通大学“青年拔尖人才支持计划”A类 (2023)
IEEE青年学者成就奖(IEEE Steven A. Boggs Young Professional Achievement Award) (2024)
中国电工技术学会科技进步一等奖(2025)
中国新锐科技人物创新贡献奖 (2023)
美国宾州州立大学博士后优秀研究奖(Postdoctoral Excellence in Research Award) (2023)
全国发明展览会发明创业奖项目金奖(2021)
在Nature、Nature Materials、Nature Reviews Electrical Engineering 等期刊发表SCI论文70余篇,出版英文专著章节2章。代表性论文如下(#共同第一作者,*通讯作者):
[01] J. Chen#, Y. Zhou#, X. Huang#*, C. Yu, D. Han, A. Wang, Y. Zhu, K. Shi, Q. Kang, P. Li, P. Jiang, X. Qian, H. Bao, S. Li, G. Wu, X. Zhu, Q. Wang*, Ladderphane copolymers for high-temperature capacitive energy storage, Nature, 615(7950), 62-66, 2023. (IF: 69.5)
[02] Y. Liu#*, Y. Zhou#, H. Qin, T. Yang, X. Chen, L. Li, Z. Han, K. Wang, B. Zhang, W. Lu, L. Q. Chen, J. Bernholc, Q. Wang*, Electro-thermal actuation in percolative ferroelectric polymer nanocomposites, Nature Materials, 22, 873-879, 2023. (IF: 47.7, Research Briefing)
[03] Y. Zhou*, J. He*, Development of environmentally friendly high-capacity power cables, Nature Reviews Electrical Engineering, 1(9), 565-566, 2024.
[04] Y. Li, Y. Chen, Z. Li, Y. Cui, L. Cheng, K. Cao, Y, Han, W. Liu*, Y. Zhou*, Superior high-temperature capacitive energy storage performance enabled by in situ grown nanodots in polymer nanocomposites, Energy & Environmental Scinece, 2025. (IF: 31.0)
[05] Y. Zhou, Y. Chen, L. Cheng, W. Liu*, High-temperature all-organic polymer dielectrics for capacitive energy storage, Advanced Materials, 2025. (IF: 26.8)
[06] Y. Zhou*, Y. Chen, Y. Cui, Z. Li, Z. Li, C. Zhou, L. Cheng, W. Liu*, Scalable polyolefin-based all-organic dielectrics with superior high-temperature capacitive energy storage performance, Energy Storage Materials, 72, 103715, 2024. (IF: 20.2)
[07] Y. Zhou, L. Li, Z. Han, Q. Li*, J. He, Q. Wang*, Self-healing polymers for electronics and energy devices, Chemical Reviews, 123(2), 558-612, 2023. (IF: 72.1, Cover Article)
[08] Y. Zhou, Y. Zhu, W. Xu, Q. Wang*, Molecular trap engineering enables superior high-temperature capacitive energy storage performance in all-organic composite at 200 °C, Advanced Energy Materials, 2203961, 2023. (IF: 29.7)
[09] H. Li#, Y. Zhou#, Y. Liu, L. Li, Y. Liu*, Q. Wang*, Dielectric polymers for high-temperature capacitive energy storage. Chemical Society Reviews, 50(11), 6369-6400, 2021. (IF: 60.6, Cover Article)
[10] Y. Zhou#, C. Yuan#, S. Wang, Y. Zhu, S. Cheng, X. Yang, Y. Yang, J. Hu, J. He*, Q. Li*, Interface-modulated nanocomposites based on polypropylene for high-temperature energy storage, Energy Storage Materials, 28, 255-263, 2020. (IF: 20.8)
[11] C. Yuan, Y. Zhou, Y. Zhu, J. Liang, S. Wang, S. Peng, Y. Li, S. Cheng, M. Yang, J. Hu, B. Zhang, R. Zeng, J. He*, Q. Li*, Polymer/molecular semiconductor all-organic composites for high-temperature dielectric energy storage, Nature Communications, 11, 3919, 2020. (IF: 14.9, Editors' Highlight)
[12] Y. Zhou, Q. Li*, B. Dang, Y. Yang, T. Shao, H. Li, J. Hu, R. Zeng, J. He*, Q. Wang*, A scalable, high‐throughput, and environmentally benign approach to polymer dielectrics exhibiting significantly improved capacitive performance at high temperatures, Advanced Materials, 30(49), 1805672, 2018. (IF: 32.1, Frontispiece Article)