材料科学
自愈水凝胶
电致发光
电极
离子电导率
光电子学
荧光粉
离子键合
电解质
堆积
发光
纳米技术
图层(电子)
化学工程
离子
高分子化学
化学
物理
物理化学
量子力学
核磁共振
工程类
作者
Yeonjeong Go,Ho‐Yeol Park,Yijie Zhu,Kiyoung Yoo,Jeonghun Kwak,Sung‐Ho Jin,Jinhwan Yoon
标识
DOI:10.1002/adfm.202215193
摘要
Abstract To realize wearable displays and interactive soft robots, significant research efforts are focused on developing highly deformable alternating‐current electroluminescent (ACEL) devices. Although soft emission layers are well developed, designing stretchable, conductive, and transparent soft electrodes remains challenging. In this study, ionic hydrogels are prepared comprising a double network (DN) of poly( N ‐hydroxyethylacrylamide‐ co ‐acrylamide)/crosslinked chitosan swollen in aqueous lithium bis(trifluoromethanesulfonyl) imide. Owing to the finely tuned DN structure of the polymeric crosslinker and transparent electrolyte, the developed ionic hydrogels exhibit remarkable stretchability (1400%), excellent optical transmittance (>99%), and high conductivity (1.95 × 10 −2 Sm −1 ). Based on the high performance of the ionic hydrogels, ACEL devices are fabricated with an emission layer containing phosphor microparticles and demonstrate stable, high luminance under extreme deformation, and ultra‐high elongation. The excellent transparency of the ionic hydrogel further enables the fabrication of novel soft ACEL devices with tandem structures by stacking several emission and electrode layers, in which each emission layer is independently controlled with a switch circuit.
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