Key Lab for Special Functional Materials, Ministry of Education, Henan University , Kaifeng 475004, China.
Beijing Institute of Nanoenergy and Nanosystems, Chinese Academy of Sciences , Beijing 100083, China.
ACS Nano. 2017 Sep 26;11(9):8796-8803. doi: 10.1021/acsnano.7b02866. Epub 2017 Aug 25.
The sliding-mode triboelectric nanogenerator (S-TENG) with grated structure has important applications in energy harvest and active sensors; however its concavo-convex structure leads to large frictional resistance and abrasion. Here, we developed a S-TENG with a chemical group grated structure (S-TENG-CGG), in which the triboelectric layer's triboelectric potential has a positive-negative alternating charged structure. The triboelectric layer of the S-TENG-CGG was fabricated through a reactive ion etching process with a metal shadow mask with grated structure. In the etched region, the nylon film, originally positively charged as in friction with stainless steel, gained opposite triboelectric potential and became negatively charged because of the change of surface functional groups. The output signals of the S-TENG-CGG are alternating and the frequency is determined by both the segment numbers and the moving speed. The applications of the S-TENG-CGG in the charging capacitor and driving calculator are demonstrated. In the S-TENG-CGG, since there is no concavo-convex structure, the frictional resistance and abrasion are largely reduced, which enhances its performances in better stability and longer working time.
具有齿状结构的滑模摩擦纳米发电机(S-TENG)在能量收集和有源传感器中有重要应用;然而,其凹凸结构导致较大的摩擦阻力和磨损。在这里,我们开发了一种具有化学基团齿状结构的 S-TENG(S-TENG-CGG),其中摩擦层的摩擦电势具有正负交替的带电结构。S-TENG-CGG 的摩擦层通过带有齿状结构的金属掩模的反应离子刻蚀工艺制造。在刻蚀区域,尼龙薄膜最初与不锈钢摩擦时带正电,由于表面官能团的变化获得了相反的摩擦电势并带负电。S-TENG-CGG 的输出信号是交替的,频率由段数和移动速度决定。展示了 S-TENG-CGG 在给电容器充电和驱动计算器方面的应用。在 S-TENG-CGG 中,由于没有凹凸结构,摩擦阻力和磨损大大降低,从而提高了其更好的稳定性和更长工作时间的性能。