雷周玥
发布部门:304.cam永利集团       发布时间:2023-12-25

雷周玥

特聘研究员

304.cam永利集团

上海市松江区人民北路2999号复合材料协同创新大楼B630,201620 

Email: leizhouyue@dhu.edu.cn

 

学习及工作经历

2010.09-2014.06   四川大学,高分子材料与工程学院(吴玉章学院),工学学士

2014.09-2019.06   复旦大学,高分子科学系,理学博士(导师:武培怡 教授)

2019.08-2023.02   哈佛大学,工程与应用科学学院(John A. Paulson School of Engineering and Applied Sciences),博士后(导师:David A. Weitz教授)

2023.03-至今     304.cam永利集团,特聘研究员

 

主要研究方向

智能凝胶,离子/电子导电弹性体,离子导电高分子,仿生智能材料

 

主要成果

2020-2024年连续5年入选斯坦福大学发布的全球前2%科学家榜单 (World’s Top 2% Scientists)

2023年入选国家级青年人才(HYYQ

2024年获得华为公司难题揭榜火花价值奖(终端BG硬工透明导电弹性体材料

2020-2024连续五年入选斯坦福大学发布的全球前2%科学家榜单(World’s Top 2% Scientists

2022年入选上海市领军青年人才(海外)

2022年获国际先进材料学会青年科学家奖 (IAAM Young Scientist Medal)

2019年入选全国高校百名研究生党员标兵

目前已获授权专利 8


代表性论文

1.Ning Zhou, Ting Cui, Zhouyue Lei*, Peiyi Wu*. Bioinspired learning and memory in ionogels through fast response and slow relaxation dynamics of ions. Nature Communications 2025, 16, 4573.

2.Weiyan Zhu, Zhouyue Lei*, Peiyi Wu*. Multi-stage collaborative design of hierarchical twisted hydrogel electrolytes for aqueous zinc-ion batteries with high capacity, ultralong stability, and mechanical robustness. Energy & Environmental Science 2025, 18, 3647-3658.

3.Weiyan Zhu, Baohu Wu, Zhouyue Lei*, Peiyi Wu. Piezoionic elastomers by phase and interface engineering for high-performance energy-harvesting ionotronics. Advanced Materials 2024, 36, 2313127. (ESI Highly Cited Paper)

4.Wei Zhao, Baohu Wu, Zhouyue Lei*, Peiyi Wu*. Hydrogels with differentiated hydrogen-bonding networks for bioinspired stress response. Angewandte Chemie International Edition 2024, 63, e202400531.

5.Zhouyue Lei, Peiyi Wu. Short-term plasticity, multimodal memory, and logical responses mimicked in stretchable hydrogels. Matter 2023, 6, 429-444.

6.Wei Zhao, Zhouyue Lei*, Peiyi Wu*. Mechanically adaptative and environmentally stable ionogels for energy harvest. Advanced Science, 2023, 10, 2300253. (ESI Highly Cited Paper)

7.Zhouyue Lei1, Wei Gao1, Peiyi Wu. Double-network thermocells with extraordinary toughness and boosted power density for continuous heat harvesting. Joule 2021, 5, 2211-2222. (ESI Highly Cited Paper)

8.Zhouyue Lei, Peiyi Wu. A highly transparent and ultra-stretchable conductor with stable conductivity during large deformation. Nature Communications 2019, 10, 3429. (ESI Highly Cited Paper)

9.Zhouyue Lei, Peiyi Wu. A supramolecular biomimetic skin combining a wide spectrum of mechanical properties and multiple sensory capabilities. Nature Communications 2018, 9, 1134. (ESI Highly Cited Paper)

10.Zhouyue Lei, Quankang Wang, Shengtong Sun, Wencheng Zhu, Peiyi Wu. A bioinspired mineral hydrogel as a self-healable, mechanically adaptable ionic skin for highly sensitive pressure sensing. Advanced Materials 2017, 29, 1700321. (ESI Highly Cited Paper)