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Force-assembled triboelectric nanogenerator with high-humidity-resistant electricity generation using hierarchical surface morphology

机译:采用分级表面形态的高强度耐湿发电摩擦组装式纳米发电机

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We introduce a novel, robust, cost-effective, and scalable approach for the preparation of a large-area force-assembled triboelectric nanogenerator (FTENG), which allows a stable and high electric output under a wide range of humidity conditions through its dual-sized morphology (i.e., microstructures and nanostructures). In this study, hexagonally packed colloidal arrays prepared by a force assembly approach rather than by conventional self assembly were used as a mold for a triboelectric poly(dimethylsiloxane) (PDMS) replica with desired pattern shapes (intaglio and embossed structures) and sizes. The morphological size of the PDMS films was determined by the diameter of the force-assembled colloids. The electrical output performance of FTENGs composed of electrodes and a PDMS film increased substantially as the size of the micropores (for intaglio-structured PDMS) or embossed features (for embossed-structured PDMS) decreased. Furthermore, the triboelectric PDMS film with micro-anosized features (i.e., dual-embossed PDMS) displayed a remarkable electrical output of 207 V (open-circuit voltage under a compressive force of 90 N in relative humidity (RH) of 20%) and high hydrophobicity compared to that of PDMS films with flat, intaglio or embossed structures. This device maintained a high electric output even in a high-humidity environment (i.e., open-circuit output voltage similar to 175 V in RH 80%). Our approach using force-assembly and hierarchical surface morphology will provide a novel and effective framework for developing strong power sources in various self-powered electronics. (C) 2016 Elsevier Ltd. All rights reserved.
机译:我们介绍了一种新颖,可靠,经济高效且可扩展的方法来制备大面积的力组装式摩擦电纳米发电机(FTENG),该发电机通过其双重动力就可在各种湿度条件下稳定且高电输出。大小的形态(即微观结构和纳米结构)。在这项研究中,通过力组装方法而不是通过传统的自组装方法制备的六方堆积的胶体阵列被用作具有所需图案形状(凹版印刷和浮雕结构)和尺寸的摩擦聚二甲基硅氧烷(PDMS)复制品的模具。 PDMS膜的形态大小由力组装胶体的直径决定。由电极和PDMS膜组成的FTENGs的电输出性能随着微孔尺寸(对于凹版结构的PDMS)或压纹特征(对于压纹结构的PDMS)的减小而显着提高。此外,具有微米级/纳米级特性的摩擦电PDMS膜(即双压纹PDMS)显示了207 V的出色电输出(在相对湿度(RH)为20%的情况下,在90 N的压缩力下的开路电压)与具有平坦,凹版或浮雕结构的PDMS膜相比,疏水性高。即使在高湿度环境下(即使在RH 80%时开路输出电压类似于175 V),该器件仍可保持高电输出。我们使用力组装和分层表面形态的方法将为开发各种自供电电子产品中的强大电源提供新颖有效的框架。 (C)2016 Elsevier Ltd.保留所有权利。

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