Department of Materials Science and Engineering, National Yang Ming Chiao Tung University, Hsinchu, 30010, Taiwan.
Department of Materials Science and Engineering, National Chung Hsing University, Taichung, 40227, Taiwan.
Adv Sci (Weinh). 2023 Jan;10(2):e2202815. doi: 10.1002/advs.202202815. Epub 2022 Dec 1.
Due to the ongoing development of portable/mobile electronics, sources to power have received widespread attention. Compared to chemical batteries as power sources, triboelectric nanogenerators (TENGs) possess lots of advantages, including the ability to harvest energy via human motions, flexible structures, environment-friendliness, and long-life characteristics. Although many self-healable TENGs are reported, the achievement of a muscle-like elasticity and the ability to recover from inevitable damage under extreme conditions (such as a high/low temperature and/or humidity) remain a challenge. Herein, a "double-terminal aromatic disulfide" on a structure with zwitterions as branched chains is reported to engineer the high-efficient self-healable elastomer for application in a flexible TENG. The as-designed material exhibits a repeatable elastic recovery (at 250% elongation) and a self-healing efficiency with an ultimate tensile stress of 96% over 2 h, representing an improvement on previously reported disulfide-based elastomers. The elastomer can autonomously recover by 50% even at a subzero temperature of -30 °C within 24 h. The elastomer-based TENG, as a self-driven sensor for detecting human behavior, is demonstrated to exhibit stable outputs and self-healing in the temperature range of -30 to 60 °C, and so is expected to promote the development of self-powered electronics for next-generation human-machine communications.
由于便携式/移动电子设备的不断发展,电源已成为研究热点。与化学电池作为电源相比,摩擦纳米发电机(TENG)具有许多优点,包括能够通过人体运动收集能量、具有灵活的结构、环境友好以及长寿命等特点。尽管已经报道了许多自修复 TENG,但实现类似于肌肉的弹性以及在极端条件(如高低温或高湿度)下从不可避免的损坏中恢复的能力仍然是一个挑战。在这里,报告了一种“双端芳基二硫”结构,其中支链为两性离子,用于设计高效自修复弹性体,应用于柔性 TENG。所设计的材料表现出可重复的弹性恢复(在 250%伸长率下)和自修复效率,在 2 小时内的最终拉伸强度达到 96%,优于以前报道的二硫键弹性体。即使在 24 小时内的零下 30°C 的低温下,弹性体也能自动恢复 50%。基于弹性体的 TENG 作为一种用于检测人体行为的自驱动传感器,在-30 至 60°C 的温度范围内表现出稳定的输出和自修复能力,有望推动下一代人机通信的自供电电子产品的发展。