
副教授
办公室:北京市朝阳区北三环东路15号科技大厦713
E-mail:gaofulin@buct.edu.cn
研究领域:
纳米复合材料的结构设计及功能应用;
柔性传感材料设计及其在具身智能、电子皮肤及可穿戴设备等领域中的应用
2019.09-2024.06,北京化工大学,博士
2015.09-2019.06,青岛科技大学,学士2026.07-至今,北京化工大学,副教授
2024.07-2026.06,中国科学院化学研究所,博士后主要从事纳米复合材料结构设计与功能应用,已在Matter、Adv. Funct. Mater.、ACS Nano等材料领域顶刊公开发表SCI论文18篇。承担国自然青年基金、中国博士后面上基金,参与国自然区域创新联合基金等项目。入选国家资助博士后研究人员计划。申请国家发明专利7项(已授权1项)。荣获中国复合材料学会科学技术奖二等奖(R6/9)以及北京分子科学国家研究中心优秀博士后,北京化工大学优秀博士毕业论文。
1. Xiaoyang Fang, Fan‐Zhen Jiao, Fu‐Lin Gao*, Changjun Li, Qian Wang, Shumiao Li, Jiahao Zhang, Huimeng Ding, Zhong‐Zhen Yu, Dan Yang*, Xiaofeng Li*, Active Water Cluster Reconfiguration Enables Seawater-Potentiated Solar Evaporation for Agricultural Irrigation. Advanced Functional Materials2026, 36, e76669.
2. Shumiao Li; Fu‐Lin Gao*; Xiaoyang Fang; Qian Wang; Hao‐Tong Wang; Ning Zhao*; Zhong‐Zhen Yu; Xiaofeng Li*, Ultra-Tough, Freeze-Tolerant Hydrogel Fibers via Synergistic Freeze-Spinning and Salting-Out, Advanced Functional Materials2026,36 e29542.
3. Xinghe Xu; Fu-Lin Gao*; Lin Tian; Zhi-Yue Yang; Zhong-Zhen Yu; Jie Shang; Run-Wei Li; Xiaofeng Li*, Ultra-sensitive and high-resolution flexible thermoelectric sensor enabled by p-n heterojunction array structure, Matter, 2025, 8, 102265.
4. Lin Tian; Fu-Lin Gao*; Yu-Xiao Li; Zhi-Yue Yang; Xinghe Xu; Zhong-Zhen Yu; Jie Shang; Run-Wei Li; Xiaofeng Li*, High-Performance Bimodal Temperature/Pressure Tactile Sensor Based on Lamellar CNT/MXene/Cellulose Nanofibers Aerogel with Enhanced Multifunctionality, Advanced Functional Materials, 2025, 35, 2418988.
5. Fu-Lin Gao; Peng Min; Qian Ma; Tingting Zhang; Zhong-Zhen Yu; Jie Shang; Run-Wei Li; Xiaofeng Li*; Multifunctional Thermoelectric Temperature Sensor for Noncontact Information Transfer and Tactile Sensing in Human-Machine Interaction, Advanced Functional Materials, 2024, 34, 2309553.
6. Fu-Lin Gao; Ji Liu*; Xiao-Peng Li; Qian Ma; Tingting Zhang; Zhong-Zhen Yu; Jie Shang; Run-Wei Li; Xiaofeng Li*; Ti3C2Tx MXene-Based Multifunctional Tactile Sensors for Precisely Detecting and Distinguishing Temperature and Pressure Stimuli, ACS Nano, 2023, 17, 16036-16047.