王轶飞

职 称:副教授

所在系所:材料物理研究所

个人主页:

E-MAIL:Yifei.wang@xjtu.edu.cn

专业方向:1.电介质储能材料 2.绝缘复合材料

教育及工作经历(含交大材料学院)

时间

学校/单位

专业方向/研究领域

学位/职位

20232月-至今

西安交通大学材料学院

功能电介质复合材料

特聘研究员

20226月-20231月

美国康涅狄格大学材料系

功能电介质复合材料

研究助理教授

20189月-20226月

美国康涅狄格大学材料系

功能电介质复合材料

博士后

20139月-20189月

西安交通大学电信学部电子学院

电子科学与技术

博士学位

20139月-20189月

西安交通大学电信学部电子学院

电子科学与技术

学士学位


教师简介

王轶飞博士于2023年2月加入西安交通大学材料学院材料物理所功能材料研究中心,担任特聘研究员。博士毕业于西安交通大学电子科学与技术专业。王轶飞博士长期致力于功能电介质复合材料研究,在Adv. Mater.、Adv. Sci.、Adv. Funct. Mater.等材料领域高水平期刊发表论文70余篇,所发表论文共被引用5000余次;担任J. Materiomics期刊青年编委,担任Nature Energy、Adv. Mater.期刊审稿人。


Dr. Yifei Wang joined the Center for Functional Materials Research, Institute of Materials Physics, School of Materials Science and Engineering at Xi'an Jiaotong University in February 2023 as a Distinguished Research Fellow. He received his Ph.D. in Electronic Science and Technology from Xi'an Jiaotong University. Dr. Wang has long been dedicated to research on functional dielectric composites, publishing over 70 papers in high-impact journals in the materials field, including Adv. Mater., Adv. Sci., and Adv. Funct. Mater. His publications have been cited more than 5,000 times. He serves as a Youth Editorial Board Member for the Journal of Materiomics and as a reviewer for journals such as Nature Energy and Adv. Mater.


代表成果

科研项目

国家自然科学基金青年基金,2024.01-2026.12,30万元,主持,在研

JKW项目,2025.12-2028.11,370万元,主持,在研

博士后专项,2025.01-2027.12,60万元,主持,在研

陕西省“校招共用”专项,2025.10-2028.09,37.5万元,主持,在研

国网无锡供电公司横向课题,2024.08-2024.12,22.32万元,主持,结题

西安交通大学青年拔尖人才计划B类项目,2023.03-2029.03,100万元,主持,在研


代表成果列表

1. Yifei Wang, Jin Cui, Qibin Yuan, Yujuan Niu, Yuanyuan Bai, Hong Wang*, Significantly Enhanced Breakdown Strength and Energy Density in Sandwich-Structured Barium Titanate/Poly(vinylidene fluoride) Nanocomposites. Adv. Mater. 27, 6658-6663 (2015). (ESI highly cited paper)

2. Yifei Wang, Yi Li, Linxi Wang, Qibin Yuan, Jie Chen, Yujuan Niu, Xinwei Xu, Qing Wang, Hong Wang*, Gradient-layered polymer nanocomposites with significantly improved insulation performance for dielectric energy storage. Energy Storage Mater. 24, 626-634 (2020). (ESI highly cited paper)

3. Yifei Wang, Linxi Wang, Qibin Yuan, Jie Chen, Yujuan Niu, Xinwei Xu, Yatong Cheng, Bin Yao, Qing Wang, Hong Wang*, Ultrahigh energy density and greatly enhanced discharged efficiency of sandwich-structured polymer nanocomposites with optimized spatial organization. Nano Energy 44, 364-370 (2018). (ESI highly cited paper)

4. Yifei Wang, Jin Cui, Linxi Wang, Qibin Yuan, Yujuan Niu, Jie Chen, Qing Wang, Hong Wang*, Compositional tailoring effect on electric field distribution for significantly enhanced breakdown strength and restrained conductive loss in sandwich-structured ceramic/polymer nanocomposites. J. Mater. Chem. A 5, 4710-4718 (2017). (ESI highly cited paper)

5. Yifei Wang, Zongze Li, Thomas J. Moran, Luis A. Ortiz, Chao Wu, Antigoni C. Konstantinou, Hiep Nguyen, Jierui Zhou, Jindong Huo, Kerry Davis-Amendola, Peinan Zhou, Bryan D. Huey, and Yang Cao*, Interfacial 2D montmorillonite nanocoatings enable sandwiched polymer nanocomposites to exhibit ultrahigh capacitive energy storage performance at elevated temperatures. Adv. Sci. 9, e2204760 (2022).

6. Zhener Dang, Ying Lin*, Qibin Yuan*, Xinyi Li, Yongjing Zhang, Yanlong Ma, Yi Wang, Qiaoyu Yang, Yifei Wang*, Haibo Yang*, Ultrahigh dielectric energy density and efficiency in PEI-based gradient layered polymer nanocomposite. Adv. Funct. Mater. 34, 2406148 (2024).

7. Zhener Dang†, Yifei Wang†, Ying Lin*, Qibin Yuan*, Yongzhen Ma, Yanlong Ma, Qiaoyu Yang, Jing Wang*, Haibo Yang*, Superior energy storage performance induced by cross‐scale electric field modulation utilizing hybrid hierarchical micro–nano fillers in PEI-based composites, Adv. Funct. Mater. 35, 2502204 (2025).

8. Yifei Wang*, Jierui Zhou, Antigoni C. Konstantinou, Mohamadreza Arab Baferani, Kerry Davis-Amendola, Wenqiang Gao, and Yang Cao*, Sandwiched polymer nanocomposites reinforced by two-dimensional interface nanocoating for ultrahigh energy storage performance at elevated temperatures. Small 19, e2208105 (2023).

9. Jianjun Liu, Yang Liu, Tao Liu, Weichen Zhao, Ying Han, Yifei Wang*, Tao Zhou*, Yao Zhou, Wenfeng Liu*, Di Zhou*, Superior High‐Temperature Energy Storage Performance in All‐Organic Composite Dielectrics Achieved by Synergistic Regulation of Free Volume and Charge Distribution, Small 21, e07631 (2025).

10. Bo Song, Ming Ren*, Yujie Liu, Qian Wu, Zhang Yang, Chongxing Zhang, Ming Dong, Yifei Wang*, Tailoring the electron free path in an ultra-lightweight gas-solid composite insulation system for high dielectric strength. Compos. Part B: Eng. 278, 111429 (2024).