Li Yan, Hu Hongwei, Salim Teddy, Cheng Guanggui, Lam Yeng Ming, Ding Jianning
School of Mechanical Engineering, Jiangsu University of Science and Technology, Zhenjiang 212003, China.
Institute of Intelligent Flexible Mechatronics, School of Mechanical Engineering, Jiangsu University, Zhenjiang 212013, China.
Polymers (Basel). 2023 Aug 17;15(16):3432. doi: 10.3390/polym15163432.
Multifunctional fiber materials play a key role in the field of smart textiles. Temperature sensing and active thermal management are two important functions of smart fabrics, but few studies have combined both functions in a single fiber material. In this work, we demonstrate a temperature-sensing and in situ heating functionalized conductive polymer microfiber by exploiting its high electrical conductivity and thermoelectric properties. The conductive polymer microfibers were prepared by wet-spinning the PEDOT:PSS aqueous dispersion with ionic liquid additives, which was used to enhance the electrical and mechanical properties of the final microfibers. The thermoelectric properties of these microfibers were further studied. Due to their excellent flexibility and mechanical properties, these fibers can be easily integrated into commercial fabrics for the manufacture of smart textiles through knitting. We further demonstrated a smart glove with integrated temperature-sensing and in situ heating functions, and further explored thermoelectric fiber-based temperature-sensing array fabric. These works combine the thermoelectric properties and heating function of conductive polymer fibers, providing new insights that enable further development of high-performance, multifunctional wearable smart textiles.
多功能纤维材料在智能纺织品领域发挥着关键作用。温度传感和主动热管理是智能织物的两个重要功能,但很少有研究将这两种功能结合在单一纤维材料中。在这项工作中,我们通过利用导电聚合物微纤维的高电导率和热电特性,展示了一种温度传感和原位加热功能化的导电聚合物微纤维。导电聚合物微纤维是通过将PEDOT:PSS水分散体与离子液体添加剂进行湿纺制备的,离子液体添加剂用于增强最终微纤维的电学和力学性能。对这些微纤维的热电特性进行了进一步研究。由于其优异的柔韧性和力学性能,这些纤维可以很容易地通过针织集成到商业织物中,用于制造智能纺织品。我们进一步展示了一种具有集成温度传感和原位加热功能的智能手套,并进一步探索了基于热电纤维的温度传感阵列织物。这些工作结合了导电聚合物纤维的热电特性和加热功能,为高性能、多功能可穿戴智能纺织品的进一步发展提供了新的见解。