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由半导体和导体的本征可拉伸弹性体复合材料制成的橡胶电子产品和传感器。

Rubbery electronics and sensors from intrinsically stretchable elastomeric composites of semiconductors and conductors.

作者信息

Kim Hae-Jin, Sim Kyoseung, Thukral Anish, Yu Cunjiang

机构信息

Department of Mechanical Engineering, University of Houston, Houston, TX 77204, USA.

Materials Science and Engineering Program, University of Houston, Houston, TX 77204, USA.

出版信息

Sci Adv. 2017 Sep 8;3(9):e1701114. doi: 10.1126/sciadv.1701114. eCollection 2017 Sep.

Abstract

A general strategy to impart mechanical stretchability to stretchable electronics involves engineering materials into special architectures to accommodate or eliminate the mechanical strain in nonstretchable electronic materials while stretched. We introduce an all solution-processed type of electronics and sensors that are rubbery and intrinsically stretchable as an outcome from all the elastomeric materials in percolated composite formats with P3HT-NFs [poly(3-hexylthiophene-2,5-diyl) nanofibrils] and AuNP-AgNW (Au nanoparticles with conformally coated silver nanowires) in PDMS (polydimethylsiloxane). The fabricated thin-film transistors retain their electrical performances by more than 55% upon 50% stretching and exhibit one of the highest P3HT-based field-effect mobilities of 1.4 cm/V∙s, owing to crystallinity improvement. Rubbery sensors, which include strain, pressure, and temperature sensors, show reliable sensing capabilities and are exploited as smart skins that enable gesture translation for sign language alphabet and haptic sensing for robotics to illustrate one of the applications of the sensors.

摘要

赋予可拉伸电子产品机械拉伸性的一般策略包括将材料设计成特殊结构,以在拉伸时容纳或消除不可拉伸电子材料中的机械应变。我们介绍了一种全溶液处理型的电子产品和传感器,它们呈橡胶状且本质上具有可拉伸性,这是通过将所有弹性体材料以渗流复合形式与聚(3 - 己基噻吩 - 2,5 - 二亚基)纳米纤维(P3HT - NFs)以及在聚二甲基硅氧烷(PDMS)中的金纳米颗粒 - 银纳米线(AuNP - AgNW,即具有保形涂层银纳米线的金纳米颗粒)相结合而实现的。所制备的薄膜晶体管在50%拉伸时能保持超过55%的电性能,并且由于结晶度的提高,展现出基于P3HT的场效应迁移率中最高的1.4 cm/V∙s之一。橡胶状传感器,包括应变、压力和温度传感器,展示出可靠的传感能力,并被用作智能皮肤,能够实现手语字母的手势转换以及机器人的触觉传感,以此说明传感器应用之一。

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