School of Chemistry and Chemical Engineering, Yantai University, Yantai, 264005, P. R. China.
School of Metallurgy and Materials Engineering, Chongqing University of Science and Technology, Chongqing, 401331, P. R. China.
Adv Sci (Weinh). 2021 Oct;8(20):e2102314. doi: 10.1002/advs.202102314. Epub 2021 Aug 13.
Flexible conducting films in the forms of bendability or stretchability are developed as a key component to enable soft electronics. With the requirements of miniaturization and portability of modern electronics, conducting film that can endure in-plane shrinkage is urgently needed but still remains challenging. Here, a new type of conducting film achieving reversible in-plane folding-unfolding function with large deformation by infusing conductive liquids into hierarchically structured polymer films consisting of both nanostructured polymer nanofibers and microstructured frames is reported. Nanostructured polymer nanofibers that can be completely wetted by the conductive liquids provide capillary forces to gain reversible in-plane folding-unfolding property, while the microstructured frames greatly enhance the extent during folding-unfolding process. Conductivity of the produced films can be significantly improved by rationally tuning the composition of infused conductive liquids, which always keeps high values during the folding-unfolding deformation. It is believed that this work may serve as the basis for robust fabrication of flexible conducting films with reversible in-plane folding-unfolding function, and can also put one-step forward of modern soft electronics.
可弯曲或可拉伸形式的柔性导电膜作为一种关键组件被开发出来,以实现软电子产品。随着现代电子产品小型化和便携化的要求,急需能够承受面内收缩的导电膜,但这仍然具有挑战性。在这里,报道了一种通过将导电液体注入由纳米结构化聚合物纤维和微结构化框架组成的分层结构聚合物膜中,从而实现具有大变形的可逆面内折叠-展开功能的新型导电膜。完全可被导电液体润湿的纳米结构化聚合物纤维提供毛细力以获得可逆的面内折叠-展开性能,而微结构化框架在折叠-展开过程中大大增强了程度。通过合理调整注入的导电液体的组成,可以显著提高所制备的薄膜的导电性,而且在折叠-展开变形过程中始终保持高值。相信这项工作可以为具有可逆面内折叠-展开功能的柔性导电膜的稳健制造提供基础,并为现代软电子产品的发展迈出一步。