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Mechanically robust stretchable organic optoelectronic devices built using a simple and universal stencil-pattern transferring technology

机译:使用简单通用的模版图案转移技术构建的机械坚固的可拉伸有机光电器件

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摘要

Stretchable electronic and optoelectronic devices based on controllable ordered buckling structures exhibit superior mechanical stability by retaining their buckling profile without distortion in repeated stretch-release cycles. However, a simple and universal technology to introduce ordered buckling structures into stretchable devices remains a real challenge. Here, a simple and general stencil-pattern transferring technology was applied to stretchable organic light-emitting devices (SOLEDs) and polymer solar cells (SPSCs) to realize an ordered buckling profile. To the best of our knowledge, both the SOLEDs and SPSCs with periodic buckles exhibited the highest mechanical robustness by operating with small performance variations after 20,000 and 12,000 stretch-release cycles between 0% and 20% tensile strain, respectively. Notably, in this work, periodic-buckled structures were introduced into SPSCs for the first time, with the number of stretch-release cycles for the SPSCs improved by two orders of magnitude compared to that for previously reported random-buckled stretchable organic solar cells. The simple method used in this work provides a universal solution for low-cost and high-performance stretchable electronic and optoelectronic devices and promotes the commercial development of stretchable devices in wearable electronics.
机译:基于可控有序屈曲结构的可拉伸电子和光电设备通过保持其屈曲轮廓而在重复的拉伸释放循环中不变形,从而展现出卓越的机械稳定性。然而,一种简单且通用的技术将有序屈曲结构引入可拉伸设备仍然是一个真正的挑战。在此,将一种简单且通用的模具图案转移技术应用于可拉伸有机发光器件(SOLED)和聚合物太阳能电池(SPSC),以实现有序屈曲轮廓。据我们所知,具有周期性弯曲的SOLED和SPSC都表现出最高的机械强度,因为它们分别在20,000和12,000拉伸释放周期(介于0%和20%拉伸应变)后以较小的性能变化工作。值得注意的是,在这项工作中,周期性屈曲结构首次引入SPSC中,与先前报道的随机屈曲可拉伸有机太阳能电池相比,SPSC的拉伸释放循环次数提高了两个数量级。这项工作中使用的简单方法为低成本和高性能可伸缩电子和光电设备提供了通用解决方案,并促进了可穿戴电子设备中可伸缩设备的商业开发。

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