Ke Kai-Hong, Chung Chen-Kuei
Department of Mechanical Engineering, and Center, for Micro/Nano Science and Technology, National Cheng Kung University, Tainan, 701, Taiwan.
Small. 2020 Sep;16(35):e2001209. doi: 10.1002/smll.202001209. Epub 2020 Jun 25.
Triboelectric nanogenerators (TENGs) are widely applied to self-powered devices and force sensors. TENGs consist of the electrode-layer frequently made of high-cost conductors (Ag, Au, ITO) and the tribo-layer of rigid negative-triboelectricity fluoropolymers (PTFE, FEP). The surface morpholoy is studied for enhancing performance. Here, a high-performance Al/PDMS-TENG is proposed with a complex morphology of overlapped deep two-height microneedles (OL-DTH-MN) fabricated by the integrated process of low-cost CO laser ablation and PDMS casting for self-powered devices and high-sensitivity force/pressure sensors. The high open-circuit voltage and short-circuit current of the OL-DTH-MN-TENG are 167 V and 129.3 µA. Also, the sensitivity of the force/pressure sensor of the OL-DTH-MN-TENG is very high, 1.03 V N and about 3.11 V kPa , at an area of 30 cm that is much higher than the sensitivity of about 0.18-0.414 V N and 0.013-0.29 V kPa of conventional TENG sensors. Meanwhile, the high-performance OL-DTH-MN-TENG not only exhibits the energy storage capability of charging a 0.1 µF capacitor to 2.75 V at 1.19 s, to maximum 3.22 V, but also activates various self-powered devices including lighting colorful 226 LEDs connected in series, the "2020-ME-NCKU" advertising board, a calculator and a temperature sensor. Numerical simulation is also performed to support the experiments.
摩擦纳米发电机(TENGs)被广泛应用于自供电设备和力传感器。TENGs由通常由高成本导体(银、金、氧化铟锡)制成的电极层和刚性负摩擦电氟聚合物(聚四氟乙烯、氟化乙丙烯)的摩擦层组成。人们研究其表面形态以提高性能。在此,提出了一种高性能的铝/聚二甲基硅氧烷-TENG,它具有重叠的深双高度微针(OL-DTH-MN)的复杂形态,通过低成本的CO激光烧蚀和聚二甲基硅氧烷浇铸的集成工艺制造,用于自供电设备和高灵敏度力/压力传感器。OL-DTH-MN-TENG的高开路电压和短路电流分别为167 V和129.3 μA。此外,OL-DTH-MN-TENG的力/压力传感器在30平方厘米的面积上灵敏度非常高,分别为1.03 V/N和约3.11 V/kPa,远高于传统TENG传感器约0.18 - 0.414 V/N和0.013 - 0.29 V/kPa的灵敏度。同时,高性能的OL-DTH-MN-TENG不仅具有在1.19秒内将0.1 μF电容器充电至2.75 V、最大充电至3.22 V的储能能力,还能激活各种自供电设备,包括串联连接的226个彩色发光二极管、“2020 - ME - NCKU”广告牌、一个计算器和一个温度传感器。还进行了数值模拟以支持实验。