An Shanshan, Fu Shaoke, He Wencong, Li Gui, Xing Pengcheng, Du Yan, Wang Jian, Zhou Shiyi, Pu Xianjie, Hu Chenguo
Department of Applied Physics, State Key Laboratory of Power Transmission Equipment and System Security and New Technology, Chongqing Key Laboratory of Soft Condensed Matter Physics and Smart Materials, Chongqing University, Chongqing, 400044, China.
Small. 2023 Nov;19(45):e2303277. doi: 10.1002/smll.202303277. Epub 2023 Jul 11.
Sliding mode triboelectric nanogenerator (S-TENG) is effective for low-frequency mechanical energy harvesting owing to their more efficient mechanical energy extraction capability and easy packaging. Ternary electrification layered (TEL) architecture is proven useful for improving the output performance of S-TENG. However, the bottleneck of electric output is the air breakdown on the interface of tribo-layers, which seriously restricts its further improvement. Herein, a strategy is adopted by designing a shielding layer to prevent air breakdown on the central surface of tribo-layers. And the negative effects of air breakdown on the edge of sliding layer are averted by increasing the shrouded area of tribo-layers on slider. Output charge of this shielding-layer and shrouded-tribo-area optimized ternary electrification layered triboelectric nanogenerator (SS-TEL-TENG) achieves 3.59-fold enhancement of traditional S-TENG and 1.76-fold enhancement of TEL-TENG. Furthermore, even at a very low speed of 30 rpm, output charge, current, and average power of the rotation-type SS-TEL-TENG reach 4.15 µC, 74.9 µA, and 25.4 mW (2.05 W m Hz ), respectively. With such high-power output, 4248 LEDs can be lighted brightly by SS-TEL-TENG directly. The high-performance SS-TEL-TENG demonstrated in this work will have great applications for powering ubiquitous sensor network in the Internet of Things (IoT).
滑动摩擦电纳米发电机(S-TENG)由于其更高效的机械能提取能力和易于封装,在低频机械能收集方面很有效。三元带电层状(TEL)结构被证明有助于提高S-TENG的输出性能。然而,电输出的瓶颈在于摩擦层界面处的空气击穿,这严重限制了其进一步改进。在此,通过设计一个屏蔽层来防止摩擦层中心表面的空气击穿,从而采用了一种策略。并且通过增加滑块上摩擦层的覆盖面积,避免了空气击穿对滑动层边缘的负面影响。这种屏蔽层和覆盖摩擦区域优化的三元带电层状摩擦电纳米发电机(SS-TEL-TENG)的输出电荷实现了比传统S-TENG提高3.59倍,比TEL-TENG提高1.76倍。此外,即使在30转每分钟的极低速度下,旋转式SS-TEL-TENG的输出电荷、电流和平均功率分别达到4.15 μC、74.9 μA和25.4 mW(2.05 W m Hz)。凭借如此高的功率输出,SS-TEL-TENG可直接点亮4248个发光二极管。这项工作中展示的高性能SS-TEL-TENG在为物联网(IoT)中无处不在的传感器网络供电方面将有巨大应用。