Zheng Kai, Gu Fan, Wei Hongjin, Zhang Lijie, Chen Xi'an, Jin Huile, Pan Shuang, Chen Yihuang, Wang Shun
Wenzhou Key Lab of Advanced Energy Storage and Conversion, Zhejiang Province Key Lab of Leather Engineering, College of Chemistry and Materials Engineering, Wenzhou University, Wenzhou, Zhejiang, 325035, China.
Zhejiang Engineering Research Center for Electrochemical Energy Materials and Devices, Institute of New Materials and Industrial Technologies, Wenzhou University, Wenzhou, Zhejiang, 325035, China.
Small Methods. 2023 Apr;7(4):e2201534. doi: 10.1002/smtd.202201534. Epub 2023 Feb 22.
The past several years have witnessed a rapid development of intelligent wearable devices. However, despite the splendid advances, the creation of flexible human-machine interfaces that synchronously possess multiple sensing capabilities, wearability, accurate responsivity, sensitive detectivity, and fast recyclability remains a substantial challenge. Herein, a convenient yet robust strategy is reported to craft flexible transient circuits via stencil printing liquid metal conductor on the water-soluble electrospun film for human-machine interaction. Due to the inherent liquid conductor within porous substrate, the circuits feature high-resolution, customized patterning viability, attractive permeability, excellent electroconductivity, and superior mechanical stability. More importantly, such circuits display appealing noncontact proximity capabilities while maintaining compelling tactile sensing performance, which is unattainable by traditional systems with compromised contact sensing. As such, the flexible circuit is utilized as wearable sensors with practical multifunctionality, including information transfer, smart identification, and trajectory monitoring. Furthermore, an intelligent human-machine interface composed of the flexible sensors is fabricated to realize specific goals such as wireless object control and overload alarm. The transient circuits are quickly and efficiently recycled toward high economic and environmental values. This work opens vast possibilities of generating high-quality flexible and transient electronics for advanced applications in soft and intelligent systems.
在过去几年中,智能可穿戴设备发展迅速。然而,尽管取得了显著进展,但要创建同时具备多种传感能力、可穿戴性、精确响应性、灵敏检测性和快速可回收性的柔性人机界面,仍然是一项重大挑战。在此,本文报道了一种简便而稳健的策略,即通过在水溶性电纺丝膜上模板印刷液态金属导体来制作柔性瞬态电路,用于人机交互。由于多孔基材中固有的液态导体,这些电路具有高分辨率、定制图案化可行性、良好的渗透性、优异的导电性和卓越的机械稳定性。更重要的是,此类电路在保持引人注目的触觉传感性能的同时,还展现出吸引人的非接触接近能力,这是传统的接触传感受损系统所无法实现的。因此,这种柔性电路被用作具有实际多功能性的可穿戴传感器,包括信息传输、智能识别和轨迹监测。此外,还制造了一个由柔性传感器组成的智能人机界面,以实现诸如无线物体控制和过载报警等特定目标。这些瞬态电路能够快速有效地回收利用,具有很高的经济和环境价值。这项工作为在软智能系统的先进应用中生成高质量的柔性和瞬态电子器件开辟了广阔的可能性。