The Department of Chemical Engineering, Technion - Israel Institute of Technology, Haifa, 3200003, Israel.
The Russell Berrie Nanotechnology Institute, Technion - Israel Institute of Technology, Haifa, 3200003, Israel.
Adv Mater. 2020 Apr;32(17):e2000246. doi: 10.1002/adma.202000246. Epub 2020 Mar 16.
Integrating self-healing capabilities into soft electronic devices and sensors is important for increasing their reliability, longevity, and sustainability. Although some advances in self-healing soft electronics have been made, many challenges have been hindering their integration in digital electronics and their use in real-world conditions. Herein, an electronic skin (e-skin) with high sensing performance toward temperature, pressure, and pH levels-both at ambient and/or in underwater conditions is reported. The e-skin is empowered with a novel self-repair capability that consists of an intrinsic mechanism for efficient self-healing of small-scale damages as well as an extrinsic mechanism for damage mapping and on-demand self-healing of big-scale damages in designated locations. The overall design is based on a multilayered structure that integrates a neuron-like nanostructured network for self-monitoring and damage detection and an array of electrical heaters for selective self-repair. This system has significantly enhanced self-healing capabilities; for example, it can decrease the healing time of microscratches from 24 h to 30 s. The electronic platform lays down the foundation for the development of a new subcategory of self-healing devices in which electronic circuit design is used for self-monitoring, healing, and restoring proper device function.
将自愈合能力融入软电子设备和传感器对于提高其可靠性、耐久性和可持续性非常重要。尽管在自愈合软电子产品方面已经取得了一些进展,但许多挑战阻碍了它们在数字电子产品中的集成以及在实际条件下的应用。在此,报道了一种具有高传感性能的电子皮肤(e-skin),可在环境和/或水下条件下感应温度、压力和 pH 值。该电子皮肤具有一种新颖的自修复能力,包括一种用于高效修复小范围损伤的内在机制,以及一种用于在指定位置对大范围损伤进行损伤映射和按需自修复的外在机制。该整体设计基于多层结构,集成了类似于神经元的纳米结构网络用于自监测和损伤检测,以及用于选择性自修复的电加热器阵列。该系统显著增强了自修复能力;例如,它可以将微划痕的愈合时间从 24 小时缩短至 30 秒。该电子平台为开发新型自修复设备奠定了基础,其中电子电路设计用于自监测、修复和恢复设备的正常功能。