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Active and Deformable Organic Electronic Devices based on Conductive Shape Memory Polyimide

机译:基于导电形状记忆聚酰亚胺的主动和可变形有机电子器件

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摘要

Smart, deformable, and transparent electrodes are a significant part of flexible optoelectronic devices. In this work, a novel approach to making highly transparent, smooth, and conductive shape memory polyimide hybrids has been proposed. Colorless shape memory polyimide (CSMPI) with high optical transparency and high heat resistance is served as the substrate for flexible electronic devices for the first time. A hybrid (Au/Ag) metal grid electrode embedded in CSMPI (BMG/CSMPI) is first fabricated via self-cracking template and solution-coating, the advantages of which include ultrasmooth surface, superior mechanical flexibility and durability, strong surface adhesion, and excellent chemical stability due to the unique embedded hybrid structure. The resulting white polymer light emitting diodes (WPLEDs) based on BMG/CSMPI with shape memory effect are active and deformable, and are converted from 2D device into 3D devices depending on its variable stiffness characteristics. The deformed 3D devices could actively recover to the original shape upon heating. Furthermore, ultrathin and flexible 3D optoelectronic devices fabricated using shape memory polymers can promote the development of advanced optoelectronic applications in the future.
机译:智能,可变形和透明电极是柔性光电器件的重要组成部分。在这项工作中,已经提出了一种制造高度透明,光滑和导电形状记忆聚酰亚胺混合物的新方法。具有高光学透明度和高耐热性的无色形状记忆聚酰亚胺(CSMPI)首次用作柔性电子设备的基板。首先通过自裂式模板和溶液涂层制造中嵌入CSMPI(BMG / CSMPI)的杂交(AU / AG)金属栅极,其优点包括超高辐射表面,优异的机械柔韧性和耐久性,表面粘附强度由于独特的嵌入式混合结构,优异的化学稳定性。基于BMG / CSMPI的所得白色聚合物发光二极管(WPLEDs)具有形状记忆效应是有源可变形的,并且根据其可变刚度特性,从2D装置转换为3D器件。变形的3D器件可以在加热时主动地恢复到原始形状。此外,使用形状记忆聚合物制造的超薄和柔性3D光电器件可以在未来促进先进的光电应用的开发。

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