Craighero Mariavittoria, Li Qifan, Zeng Zijin, Choi Chunghyeon, Kim Youngseok, Yoon Hyungsub, Liu Tiefeng, Sowinski Przemyslaw, Haraguchi Shuichi, Hwang Byungil, Mihiretie Besira, Fabiano Simone, Müller Christian
Department of Chemistry and Chemical Engineering, Chalmers University of Technology, Göteborg, 412 96, Sweden.
Laboratory of Organic Electronics, Department of Science and Technology, Linköping University, Norrköping, 60174, Sweden.
Adv Sci (Weinh). 2024 Oct;11(38):e2406770. doi: 10.1002/advs.202406770. Epub 2024 Aug 5.
Thermoelectric textile devices represent an intriguing avenue for powering wearable electronics. The lack of air-stable n-type polymers has, until now, prevented the development of n-type multifilament yarns, which are needed for textile manufacturing. Here, the thermomechanical properties of the recently reported n-type polymer poly(benzodifurandione) (PBFDO) are explored and its suitability as a yarn coating material is assessed. The outstanding robustness of the polymer facilitates the coating of silk yarn that, as a result, displays an effective bulk conductivity of 13 S cm, with a projected half-life of 3.2 ± 0.7 years at ambient conditions. Moreover, the n-type PBFDO coated silk yarn with a Young's modulus of E = 0.6 GPa and a strain at break of ε = 14% can be machine washed, with only a threefold decrease in conductivity after seven washing cycles. PBFDO and poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS) coated silk yarns are used to fabricate two out-of-plane thermoelectric textile devices: a thermoelectric button and a larger thermopile with 16 legs. Excellent air stability is paired with an open-circuit voltage of 17 mV and a maximum output power of 0.67 µW for a temperature difference of 70 K. Evidently, PBFDO coated multifilament silk yarn is a promising component for the realization of air stable thermoelectric textile devices.
热电纺织设备是为可穿戴电子产品供电的一个有趣途径。迄今为止,缺乏空气稳定的n型聚合物阻碍了纺织制造所需的n型复丝纱线的发展。在此,我们探索了最近报道的n型聚合物聚(苯并二呋喃二酮)(PBFDO)的热机械性能,并评估了其作为纱线涂层材料的适用性。该聚合物出色的坚固性有助于对丝线进行涂层,结果显示其有效体积电导率为13 S/cm,在环境条件下预计半衰期为3.2±0.7年。此外,杨氏模量E = 0.6 GPa、断裂应变ε = 14%的n型PBFDO涂层丝线可进行机洗,在七个洗涤周期后电导率仅下降三倍。PBFDO和聚(3,4 - 乙撑二氧噻吩):聚(苯乙烯磺酸盐)(PEDOT:PSS)涂层丝线用于制造两种面外热电纺织设备:一个热电纽扣和一个有16条腿的较大热电堆。对于70 K的温差,其具有出色的空气稳定性,开路电压为17 mV,最大输出功率为0.67 μW。显然,PBFDO涂层复丝丝线是实现空气稳定热电纺织设备的一种有前途的组件。