材料科学
激光器
稳健性(进化)
可穿戴技术
可穿戴计算机
光电子学
有机发光二极管
二极管
过程(计算)
发光二极管
发光效率
数码产品
可伸缩电子设备
纳米技术
计算机科学
光学
电气工程
嵌入式系统
工程类
生物化学
化学
物理
图层(电子)
基因
操作系统
作者
Da Yin,Jing Feng,Rui Ma,Yue‐Feng Liu,Yong‐Lai Zhang,Xu‐Lin Zhang,Yan‐Gang Bi,Qi‐Dai Chen,Hong‐Bo Sun
摘要
Abstract Stretchable organic light-emitting devices are becoming increasingly important in the fast-growing fields of wearable displays, biomedical devices and health-monitoring technology. Although highly stretchable devices have been demonstrated, their luminous efficiency and mechanical stability remain impractical for the purposes of real-life applications. This is due to significant challenges arising from the high strain-induced limitations on the structure design of the device, the materials used and the difficulty of controlling the stretch-release process. Here we have developed a laser-programmable buckling process to overcome these obstacles and realize a highly stretchable organic light-emitting diode with unprecedented efficiency and mechanical robustness. The strained device luminous efficiency −70 cd A −1 under 70% strain - is the largest to date and the device can accommodate 100% strain while exhibiting only small fluctuations in performance over 15,000 stretch-release cycles. This work paves the way towards fully stretchable organic light-emitting diodes that can be used in wearable electronic devices.
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