Cheng Bolang, Niu Shaoshuai, Xu Qi, Wen Juan, Bai Suo, Qin Yong
Institute of Nanoscience and Nanotechnology, School of Materials and Energy, Lanzhou University, Lanzhou 730000, China.
ACS Appl Mater Interfaces. 2021 Dec 22;13(50):59975-59982. doi: 10.1021/acsami.1c19174. Epub 2021 Dec 12.
Triboelectric nanogenerator (TENG) has the great potential to harvest the electrostatic energy and mechanical energy of raindrops. However, raindrops are small and scattered, and it is difficult to harvest their mechanical energy effectively. In this paper, a gridding triboelectric nanogenerator (G-TENG) with an area of 81 cm is designed and developed to effectively harvest the mechanical energy of raindrops on a large scale. Its peak output power density is 8.56 mW/m, which is 245 times the value of 35 μW/m of a general TENG without gridding. Each unit of the G-TENG can work independently, which can effectively decrease the mutual counteraction of elastic deformation among the adjacent positions of the raindrop impacting layer and avoid the accumulation of raindrops. Under the impact of simulated raindrops from a shower at a flow rate of 0.137 mL/(cm·s), the open-circuit voltage () and the short-circuit current density () of the G-TENG reach 400 V and 2.5 mA/m, respectively. The peak output power density reaches 110 mW/m, which is 42 times the reported maximum value of 2.6 mW/m of raindrop energy harvesting TENGs with the size larger than 10 cm. Moreover, the G-TENG can harvest the mechanical energy of raindrops at a wide range of raindrop flow rates from 0.055 to 0.219 mL/(cm·s). This work contributes to the raindrop mechanical energy harvesting on a large scale.
摩擦纳米发电机(TENG)在收集雨滴的静电能和机械能方面具有巨大潜力。然而,雨滴体积小且分布分散,难以有效收集其机械能。本文设计并开发了一种面积为81平方厘米的网格化摩擦纳米发电机(G-TENG),以大规模有效收集雨滴的机械能。其峰值输出功率密度为8.56毫瓦/平方米,是未网格化的普通TENG的35微瓦/平方米的245倍。G-TENG的每个单元都能独立工作,可有效减少雨滴冲击层相邻位置弹性变形的相互抵消,并避免雨滴积聚。在流量为0.137毫升/(平方厘米·秒)的阵雨模拟雨滴冲击下,G-TENG的开路电压()和短路电流密度()分别达到400伏和2.5毫安/平方米。峰值输出功率密度达到110毫瓦/平方米,是尺寸大于10厘米的雨滴能量收集TENG报道的最大值2.6毫瓦/平方米的42倍。此外,G-TENG能在0.055至0.219毫升/(平方厘米·秒)的宽范围雨滴流量下收集雨滴的机械能。这项工作有助于大规模收集雨滴机械能。