Wang Meng, Ma Chao, Uzabakiriho Pierre Claver, Chen Xi, Chen Zhongrong, Cheng Yue, Wang Zirui, Zhao Gang
Department of Electronic Science and Technology, University of Science and Technology of China, Hefei 230027, China.
College of Mathematics, Physics and Information Science and Engineering, Zhejiang Normal University, Jinhua 321004, China.
ACS Nano. 2021 Dec 28;15(12):19364-19376. doi: 10.1021/acsnano.1c05762. Epub 2021 Nov 16.
Flexible electronics as an emerging technology has demonstrated potential for applications in various fields. With the advent of the Internet of Things era, countless flexible electronic systems need to be developed and deployed. However, materials and fabrication technologies are the key factors restricting the development and commercialization of flexible electronics. Here we report a simple, fast, and green flexible electronics preparation technology. The stencil printing method is adopted to pattern liquid metal on the thermoplastic polyurethane membrane prepared by electrospinning. Besides, with layer-by-layer assembly, flexible circuits, resistors, capacitors, inductors, and their composite devices can be prepared parametrically. Furthermore, these devices have good stretchability, air permeability, and stability, while they are multilayered and reconfigurable. As proof, this strategy is used to fabricate flexible displays, flexible sensors, and flexible filters. Finally, flexible electronic devices are also recycled and reconfigured.
柔性电子作为一项新兴技术,已在各个领域展现出应用潜力。随着物联网时代的到来,需要开发和部署无数的柔性电子系统。然而,材料和制造技术是制约柔性电子发展和商业化的关键因素。在此,我们报道一种简单、快速且绿色的柔性电子制备技术。采用模板印刷法在通过静电纺丝制备的热塑性聚氨酯膜上对液态金属进行图案化。此外,通过逐层组装,可以参数化地制备柔性电路、电阻器、电容器、电感器及其复合器件。而且,这些器件具有良好的拉伸性、透气性和稳定性,同时它们是多层且可重构的。作为验证,该策略被用于制造柔性显示器、柔性传感器和柔性滤波器。最后,柔性电子器件还可回收和重新配置。