材料科学
纳米技术
可伸缩电子设备
灵活性(工程)
纳米材料
智能材料
可穿戴技术
接口
灵活的显示器
共形矩阵
可穿戴计算机
制作
石墨烯
数码产品
计算机科学
嵌入式系统
电气工程
计算机硬件
工程类
病理
统计
复合材料
薄膜晶体管
医学
替代医学
图层(电子)
数学
作者
Ja Hoon Koo,Dong Chan Kim,Hyung Joon Shim,Tae‐Ho Kim,Dae‐Hyeong Kim
标识
DOI:10.1002/adfm.201801834
摘要
Abstract Recent technological advances in nanomaterials have driven the development of high‐performance light‐emitting devices with flexible and stretchable form factors. Deformability in such devices is mainly achieved by replacing the rigid materials in the device components with flexible nanomaterials and their assemblies (e.g., carbon nanotubes, silver nanowires, graphene, and quantum dots) or with intrinsically soft materials and their composites (e.g., polymers and elastomers). Downscaling the dimensions of the functional materials to the nanometer range dramatically decreases their flexural rigidity, and production of polymer/elastomer composites with functional nanomaterials provides light‐emitting devices with flexibility and stretchability. Furthermore, monolithic integration of these light‐emitting devices with deformable sensors furnishes the resulting display with various smart functions such as force/capacitive touch‐based data input, personalized health monitoring, and interactive human–machine interfacing. These ultrathin, lightweight, and deformable smart optoelectronic devices have attracted widespread interest from materials scientists and device engineers. Here, a comprehensive review of recent progress concerning these flexible and stretchable smart displays is presented with a focus on materials development, fabrication techniques, and device designs. Brief overviews of an integrated system of advanced smart displays and cutting‐edge wearable sensors are also presented, and, to conclude, a discussion of the future research outlook is given.
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