姓名  李煜天
  • 职称:副教授

  • 联系电话:

  • 电子邮件:yutian.li@connect.polyu.hk

  • 联系地址:青岛市崂山区香港东路7号青岛大学纺织服装学院

【个人简介】

李煜天,博士,硕士生导师,美国德克萨斯州立大学奥斯汀分校访问学者,主要从事智能电子纺织品研究。主持国家自然科学基金青年基金,山东省自然科学基金青年项目山东省自然科学基金面上项目中纺联纺织行业智能纺织服装柔性器件重点实验室开放课题、中国服装智能可穿戴研发中心开放基金课题、威海市博士后重点资助项目EngineeringACS Applied Materials & Interfaces, Applied Materials Today期刊发表论文10余篇,授权国家发明专利5项。荣获青岛大学创新创业优秀导师、青年创新团队等称号。指导学生获得中国国际大学生创新大赛国赛铜奖2项、第七届米兰设计周中国高校设计学科师生优秀作品展全国三等奖、山东省第十届大学生科技创新大赛、青岛大学挑战杯、互联网+等竞赛获奖10余项。

 

【研究方向】


智能电子纺织品;可穿戴智能服装

 

【研究成果】
  1. F. Tong, J. Shi, Q. Jiang, M. Li, R. Xu, G. Li, Y. Liu, X. Zhang, J. Yang, M. Tian, Y. Li. Microcrack/Microscale Decorated Fiber-Based Electronics for Waist Rehabilitation. Engineering, 2025, 55: 204-216.

  2. F. Tong, T. Wang, M. Li, B. Yin, Y. Li, Y. Yang, M. Tian. Bioinspired Tunable

    Helical Fiber-Shaped Strain Sensor with Sensing Controllability for the Rehabilitation

    of Hemiplegic Patients. ACS Applied Materials & Interfaces, 2025, 17(3): 5165-5175.

  3. S. Hu, B. Yin, X. Fang, X. Qi, Y. Li, M. Tian. Self-powered, touchless, interface-friendly cellulose fabric-based sensor via electrostatic flocking strategy.International Journal of Biological Macromolecules, 2025, 305: 141199.

  4. Y. Tang, M. Li, Y. Liu, X. Guo, Y. Liu, C. Wang, Y. Li, M. Tian. Washable and anti-impact conductive cellulose yarn-based energy meta-textile against harsh environments. Applied Materials Today, 2024, 36, 102055.

  5. Y. Li, X. Miao, J. Y. Chen, G. Jiang, Q. Liu. Sensing performance of knitted strain sensor on two-dimensional and three-dimensional surfaces. Materials & Design, 2021, 197, 109273.

  6. Y. Li, P. Ma, M. Tian, M. Yu. Dynamic Equivalent Resistance Model of Knitted Strain Sensor under In-Plane and Three-Dimensional Surfaces Elongation. Polymers, 2022, 14, 2839.

  7. Y. Li, X. Miao, L. Niu, G. Jiang, P. Ma. Human motion recognition of knitted flexible sensor in walking cycle. Sensors, 2019, 20, 35.

  8. Y. Li, X. Miao, R. K. Raji. Flexible knitted sensing device for identifying knee joint motion patterns.Smart Materials and Structures, 2019, 28, 115042.