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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >One-dimensional conjugated polymer nanomaterials for flexible and stretchable electronics
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One-dimensional conjugated polymer nanomaterials for flexible and stretchable electronics

机译:一维共轭聚合物纳米材料,适用于柔性和可拉伸电子产品

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摘要

Stretchable electronics will be essential components of future wearable electronics, biomedical applications, and robotics. Conjugated polymers (CPs) have good mechanical compliance and can be processed via facile solution-based methods; thus, they can be effectively adapted to flexible and stretchable electronics. In addition, the electrical and mechanical properties of CPs can be tuned to satisfy the requirements of various flexible and stretchable next-generation applications. Typically, one effective and simple approach to apply CPs to stretchable electronics is to form one-dimensional (1D) CP nanostructures. This article reviews the recent work on the development of flexible and stretchable 1D CP nanomaterials, including nanofibril networks and printed single nanowires, and their flexible and stretchable applications and then presents some perspectives for future research on 1D CP nanomaterials for flexible and stretchable electronics.
机译:可拉伸电子器件将是未来可携带电子,生物医学应用和机器人的必要组件。 共轭聚合物(CPS)具有良好的机械顺应性,可以通过容易的基于溶液的方法加工; 因此,它们可以有效地适应灵活且可伸缩的电子器件。 此外,可以调整CP的电气和机械性能以满足各种柔性且可伸缩的下一代应用的要求。 通常,将CPS施加到可拉伸电子器件的一种有效和简单的方法是形成一维(1D)CP纳米结构。 本文综述了近期开发柔性且可伸缩的1D CP纳米材料,包括纳米纤维网络和印刷单纳米线,以及它们的柔性和可拉伸的应用,然后对柔性且可伸缩电子的1D CP纳米材料进行了一些观点,呈现了一些措施。

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