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A kirigami concept for transparent and stretchable nanofiber networks-based conductors and UV photodetectors

机译:一种透明和可伸缩纳米纤维网络的基于透明和伸缩纳米纤维网络的Kirigami概念和UV光电探测器

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摘要

To meet the increasing demand for wearable electronics today, fabrication of the stretchable devices becomes crucial. In this respect, a stretchable conductor is an essential component for achieving stretchability of the device. Herein, a stretchable and transparent conductor unit, Au-metallized PVP (Au@PVP) nanofiber network on a kirigami-structured PDMS substrate, was newly developed. By a series of comparative studies, the effectiveness of our strategies to the invariant electrical conductivity and high stretchability is convincingly demonstrated. Our stretchable conductor showed high stretchability of 110% without significant change in resistance, similar to 50% increase. It also exhibited similar to 80% transparency, as well as excellent durability. To point out its applicability, we fabricated a transparent and stretchable photodetector having the same geometry. ZnO nanorod, the 1D transparent metal oxide nanostructure, is used as a sensing material owing to its high sensitivity for UV light and large surface to volume ratio. The resulting device showed outstanding on/off ratio of 1020 at its original state and 440 under 80% strain. Its fast response/reset time, high transparency and stable performance indicate the feasibility of the stretchable and transparent optoelectronic device. (C) 2019 The Korean Society of Industrial and Engineering Chemistry. Published by Elsevier B.V. All rights reserved.
机译:为了满足今天对可穿戴电子产品的需求不断增加,可拉伸装置的制造变得至关重要。在这方面,可拉伸导体是用于实现装置拉伸性的必要组分。这里,新开发了一种可伸缩且透明的导体单元,在Kirigami结构的PDMS基板上进行宽度且透明的导体单元,在Kirigami结构的PDMS基板上进行纳米纤维网络。通过一系列比较研究,我们对不变导电性和高拉伸性的策略的有效性令人信服地证明了。我们可拉伸的导体显示出高110%的高度拉伸性,无需显着变化,抗性变化,类似于50%的增加。它还表现出类似于80%的透明度,以及出色的耐用性。要指出其适用性,我们制造了具有相同几何形状的透明和可拉伸的光电探测器。 ZnO纳米棒是1D透明金属氧化物纳米结构,由于其对UV光和大表面积的高灵敏度而被用作传感材料。所得装置在其原始状态下显示出1020的出色开/关比和440℃下的80%以上。其快速响应/复位时间,高透明度和稳定的性能表明可伸缩和透明光电器件的可行性。 (c)2019年韩国工程化学学会。 elsevier b.v出版。保留所有权利。

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