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高度可拉伸且透明的双网络水凝胶离子导体作为柔性热机械双传感器和电致发光器件

Highly Stretchable and Transparent Double-Network Hydrogel Ionic Conductors as Flexible Thermal-Mechanical Dual Sensors and Electroluminescent Devices.

作者信息

Yang Bowen, Yuan Weizhong

机构信息

School of Materials Science and Engineering, Key Laboratory of Advanced Civil Materials of Ministry of Education , Tongji University , Shanghai 201804 , People's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2019 May 8;11(18):16765-16775. doi: 10.1021/acsami.9b01989. Epub 2019 Apr 23.

DOI:10.1021/acsami.9b01989
PMID:30983316
Abstract

The latest generation flexible devices feature materials that are conductive, highly stretchable, and transparent to meet the requirements of a reliable performance. However, the existing conductors are mostly electronic conductors, which cannot satisfy these high-performance challenges. A robust hydrogel ionic conductor was rapidly fabricated with a facile one-pot approach by employing bioinspired agar with a physically cross-linked network, polyacrylamide (PAM) with a photoinitiated cross-linked network under appropriate UV intensity, and Li as conductive ions. The resulting Li/agar/PAM ionic double-network hydrogels could be fabricated into various shapes through injection. The unique ionic hydrogel showed a remarkable stretchability with over 1600% extension, high tension/compression strength (0.22 MPa/3.5 MPa), and toughness (2.2 MJ/m). Furthermore, it was demonstrated to possess dual sensory capabilities through the combination of both temperature and mechanical deformation. This hydrogel ionic conductor exhibited high stretching sensitivity with a gauge factor of 1.8 at strain 1100% and bending sensitivity in a broad angle range of 30-150°, respectively. Such highly optical transparency and elasticity endow the hydrogel-phosphor composites with promising luminescent properties. The multifunctional ionic hydrogel can be used as soft conductors for application in flexible devices such as ionic skin for wearable sensors and luminescence display.

摘要

最新一代的柔性设备采用了具有导电性、高拉伸性和透明性的材料,以满足可靠性能的要求。然而,现有的导体大多是电子导体,无法应对这些高性能挑战。通过一种简便的一锅法,利用具有物理交联网络的仿生琼脂、在适当紫外光强度下具有光引发交联网络的聚丙烯酰胺(PAM)以及锂作为导电离子,快速制备出了一种坚固的水凝胶离子导体。所得的锂/琼脂/PAM离子双网络水凝胶可以通过注射成型为各种形状。这种独特的离子水凝胶具有显著的拉伸性,伸长率超过1600%,具有较高的拉伸/压缩强度(0.22兆帕/3.5兆帕)和韧性(2.2兆焦/平方米)。此外,通过温度和机械变形的结合,证明它具有双重传感能力。这种水凝胶离子导体在应变为1100%时具有1.8的应变片系数,在30 - 150°的宽角度范围内具有弯曲敏感性,表现出高拉伸灵敏度。如此高的光学透明度和弹性赋予了水凝胶 - 磷光体复合材料良好的发光性能。这种多功能离子水凝胶可用作软导体,应用于柔性设备,如用于可穿戴传感器的离子皮肤和发光显示器。

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