Menge Habtamu Gebeyehu, Kim Min Woo, Lee Sangmin, Park Yong Tae
Department of Mechanical Engineering, Myongji University, 116 Myongji-ro, Cheoin-gu, Yongin, Gyeonggi 17058, Republic of Korea.
School of Mechanical Engineering, Chung-Ang University, 84 Heukseok-ro, Dongjak-gu, Seoul 06974, Republic of Korea.
ACS Omega. 2023 Feb 10;8(7):7135-7142. doi: 10.1021/acsomega.3c00008. eCollection 2023 Feb 21.
The development of triboelectric nanogenerators (TENGs) technology has advanced in recent years. However, TENG performance is affected by the screened-out surface charge density owing to the abundant free electrons and physical adhesion at the electrode-tribomaterial interface. Furthermore, the demand for flexible and soft electrodes is higher than that for stiff electrodes for patchable nanogenerators. This study introduces a chemically cross-linked (XL) graphene-based electrode with a silicone elastomer using hydrolyzed 3-aminopropylenetriethoxysilanes. The conductive graphene-based multilayered electrode was successfully assembled on a modified silicone elastomer using a cheap and eco-friendly layer-by-layer assembly method. As a proof-of-concept, the droplet-driven TENG with the chemically XL electrode of silicone elastomer exhibited an output power of approximately 2-fold improvement owing to its higher surface charge density than without XL. This chemically XL electrode of silicone elastomer film demonstrated remarkable stability and resistance to repeated mechanical deformations like bending and stretching. Moreover, due to the chemical XL effects, it was used as a strain sensor to detect subtle motions and exhibited high sensitivity. Thus, this cheap, convenient, and sustainable design approach can provide a platform for future multifunctional wearable electronic devices.
近年来,摩擦纳米发电机(TENGs)技术取得了进展。然而,由于电极-摩擦材料界面处存在大量自由电子和物理粘附,TENG的性能会受到筛选出的表面电荷密度的影响。此外,对于可贴片纳米发电机而言,对柔性和软性电极的需求高于刚性电极。本研究使用水解的3-氨丙基三乙氧基硅烷,引入了一种与硅橡胶弹性体结合的化学交联(XL)石墨烯基电极。采用廉价且环保的逐层组装方法,成功地在改性硅橡胶弹性体上组装了导电石墨烯基多层电极。作为概念验证,带有硅橡胶弹性体化学XL电极的液滴驱动TENG,由于其表面电荷密度高于未交联的情况,输出功率提高了约2倍。这种硅橡胶弹性体薄膜的化学XL电极表现出卓越的稳定性以及对弯曲和拉伸等反复机械变形的抗性。此外,由于化学交联效应,它被用作应变传感器来检测细微运动,并表现出高灵敏度。因此,这种廉价、便捷且可持续的设计方法可为未来的多功能可穿戴电子设备提供一个平台。