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Stretchable and transparent electrodes based on in-plane structures

机译:基于面内结构的可拉伸透明电极

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摘要

Stretchable electronics has attracted great interest with compelling potential applications that require reliable operation under mechanical deformation. Achieving stretchability in devices, however, requires a deeper understanding of nanoscale materials and mechanics beyond the success of flexible electronics. In this regard, tremendous research efforts have been dedicated toward developing stretchable electrodes, which are one of the most important building blocks for stretchable electronics. Stretchable transparent thin-film electrodes, which retain their electrical conductivity and optical transparency under mechanical deformation, are particularly important for the favourable application of stretchable devices. This minireview summarizes recent advances in stretchable transparent thin-film electrodes, especially employing strategies based on in-plane structures. Various approaches using metal nanomaterials, carbon nanomaterials, and their hybrids are described in terms of preparation processes and their optoelectronic/mechanical properties. Some challenges and perspectives for further advances in stretchable transparent electrodes are also discussed. © 2015 The Royal Society of Chemistry.
机译:可伸缩的电子器件以其在机械变形下需要可靠运行的引人注目的潜在应用引起了极大的兴趣。但是,要实现设备的可拉伸性,除了要获得柔性电子产品的成功之外,还需要对纳米级材料和力学有更深入的了解。在这方面,已经致力于开发可拉伸电极,这是可拉伸电子器件最重要的组成部分之一。在机械变形下保持其导电性和光学透明性的可拉伸透明薄膜电极对于可拉伸装置的良好应用特别重要。这份小型综述总结了可拉伸透明薄膜电极的最新进展,尤其是采用了基于平面结构的策略。根据制备过程及其光电/机械性能,描述了使用金属纳米材料,碳纳米材料及其杂化体的各种方法。还讨论了可拉伸透明电极进一步发展的一些挑战和前景。 ©2015英国皇家化学学会。

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