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用于气固相互作用发电的自修复粘性多孔弹性体。

Self-healable sticky porous elastomer for gas-solid interacted power generation.

作者信息

Xiong Jiaqing, Thangavel Gurunathan, Wang Jiangxin, Zhou Xinran, Lee Pooi See

机构信息

School of Materials Science and Engineering, Nanyang Technological University, Singapore 639798, Singapore.

出版信息

Sci Adv. 2020 Jul 15;6(29):eabb4246. doi: 10.1126/sciadv.abb4246. eCollection 2020 Jul.

Abstract

A previously unknown gas-solid interacted power generation is developed using triboelectric effect. We designed an adhesive, gas-tight, and self-healing supramolecular polysiloxane-dimethylglyoxime-based polyurethane (PDPU) porous elastomer based on segmented oxime-carbamate-urea. It is an intrinsically triboelectric negative material with trapped air within closed voids, exhibiting ultrahigh static surface potential and excellent compressibility. This porous PDPU generates electricity from interactions between the trapped air and the elastomeric matrix under periodical compression. The positively charged trapped air (or other gas) dominates the tribo-electrification with PDPU, inducing electron transfer from gas to the solid polymer for electricity generation. The self-healable elastomer renders gas-solid interacted triboelectric nanogenerator, GS-TENG, with high stretchability (~1200%). The inherently adhesive surface enables adherance to other substrates, allowing mechanical energy harvesting from deformations such as bending, twisting, and stretching. GS-TENG promises a freestanding wearable functional tactile skin for self-powered sensing of touch pressure, human motions, and Parkinsonian gait.

摘要

利用摩擦电效应开发了一种前所未知的气固相互作用发电方式。我们基于分段肟 - 氨基甲酸酯 - 脲设计了一种粘性、气密且自愈合的超分子聚硅氧烷基 - 二甲基乙二肟基聚氨酯(PDPU)多孔弹性体。它是一种本征摩擦电负极材料,封闭空隙中存有空气,表现出超高的静态表面电势和出色的压缩性。这种多孔PDPU在周期性压缩下通过捕获的空气与弹性体基质之间的相互作用发电。带正电的捕获空气(或其他气体)主导与PDPU的摩擦起电过程,促使电子从气体转移到固体聚合物以产生电能。这种自愈合弹性体使气固相互作用摩擦纳米发电机(GS - TENG)具有高拉伸性(约1200%)。其固有的粘性表面能够附着在其他基材上,从而可从诸如弯曲、扭转和拉伸等变形中收集机械能。GS - TENG有望成为一种独立的可穿戴功能性触觉皮肤,用于自供电感知触摸压力、人体运动和帕金森步态。

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