Zhou Ming, Tan Shujuan, Wang Jingwen, Wu Yue, Liang Leilei, Ji Guangbin
College of Materials Science and Technology, Nanjing University of Aeronautics and Astronautics, No. 29 Yudao Street, Nanjing, 210016, People's Republic of China.
School of Electronic Science and Engineering, Nanjing University, Nanjing, 210093, People's Republic of China.
Nanomicro Lett. 2023 Jul 10;15(1):176. doi: 10.1007/s40820-023-01144-z.
Wearable devices with efficient thermal management and electromagnetic interference (EMI) shielding are highly desirable for improving human comfort and safety. Herein, a multifunctional wearable carbon fibers (CF) @ polyaniline (PANI) / silver nanowires (Ag NWs) composites with a "branch-trunk" interlocked micro/nanostructure were achieved through "three-in-one" multi-scale design. The reasonable assembly of the three kinds of one-dimensional (1D) materials can fully exert their excellent properties i.e., the superior flexibility of CF, the robustness of PANI, and the splendid conductivity of AgNWs. Consequently, the constructed flexible composite demonstrates enhanced mechanical properties with a tensile stress of 1.2 MPa, which was almost 6 times that of the original material. This is mainly attributed to the fact that the PNAI (branch) was firmly attached to the CF (trunk) through polydopamine (PDA), forming a robust interlocked structure. Meanwhile, the composite possesses excellent thermal insulation and heat preservation capacity owing to the synergistically low thermal conductivity and emissivity. More importantly, the conductive path of the composite established by the three 1D materials greatly improved its EMI shielding property and Joule heating performance at low applied voltage. This work paves the way for rational utilization of the intrinsic properties of 1D materials, as well as provides a promising strategy for designing wearable electromagnetic protection and thermal energy management devices.
具有高效热管理和电磁干扰(EMI)屏蔽功能的可穿戴设备对于提高人类舒适度和安全性非常必要。在此,通过“三合一”多尺度设计实现了一种具有“枝 - 干”互锁微/纳米结构的多功能可穿戴碳纤维(CF)@聚苯胺(PANI)/银纳米线(Ag NWs)复合材料。三种一维(1D)材料的合理组装能够充分发挥它们的优异性能,即CF的卓越柔韧性、PANI的坚固性以及AgNWs的出色导电性。因此,所构建的柔性复合材料表现出增强的机械性能,拉伸应力为1.2 MPa,几乎是原始材料的6倍。这主要归因于PNAI(枝)通过聚多巴胺(PDA)牢固地附着在CF(干)上,形成了坚固的互锁结构。同时,由于协同作用导致的低导热率和发射率,该复合材料具有优异的隔热和保温能力。更重要的是,由三种一维材料建立的复合材料导电路径极大地改善了其在低施加电压下的EMI屏蔽性能和焦耳热性能。这项工作为合理利用一维材料的固有特性铺平了道路,也为设计可穿戴电磁防护和热能管理设备提供了一种有前景的策略。