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用于实现高效应变传感器和可拉伸有机光伏器件的本征可拉伸纳米结构银电极。

Intrinsically Stretchable Nanostructured Silver Electrodes for Realizing Efficient Strain Sensors and Stretchable Organic Photovoltaics.

机构信息

Department of Materials Engineering, Ming Chi University of Technology , New Taipei City 243, Taiwan.

Department of Chemical and Materials Engineering, Chang Gung University , Guishan District, Taoyuan City 33302, Taiwan.

出版信息

ACS Appl Mater Interfaces. 2017 Aug 23;9(33):27853-27862. doi: 10.1021/acsami.7b06963. Epub 2017 Aug 9.

DOI:10.1021/acsami.7b06963
PMID:28762269
Abstract

In this study, a new hybrid electrode featuring a high gauge factor of >30, decent stretchability (100% of the original conductivity can be retained after 50 cycles of stretching under a 20% strain without prestrain treatment), high transmittance (>70%) across 400-900 nm, and a good sheet resistance (<50 Ω sq) was successfully exploited. These superior properties were revealed to originate from the reversible phase separation endowed by the nanogranular-like morphology formed in Ag. Owing to such discrete nanomorphology, the free volume within this Ag electrode is susceptible to the applied tensile strain and the ensuing change in conductivity enables the realization of an efficient strain sensor. Besides, a representative PTB7-th:PCBM organic photovoltaic (OPV) using this electrode (with the assistance of a wrinkled scaffold to reinforce the stretchability of the active layer) can exhibit a power-conversion efficiency (PCE) of 6% along with high deformability, for which 75% of its original PCE is retained after 50 cycles of stretching under a 20% strain. Meanwhile, a representative all-polymer OPV consisting of a PTB7-th:N2200 blend, in which the N2200 has a better mechanical stretchability than that of PCBM, can maintain over 96% of its original PCE after 50 cycles of stretching (under a 20% strain) without employing the wrinkled scaffold. Such promising performance in stretchable OPVs is among the state-of-the-art results reported to date.

摘要

在这项研究中,成功开发了一种具有高应变系数 (>30)、良好拉伸性(在未经预拉伸处理的情况下,在 20%应变下拉伸 50 个循环后,仍可保留原始电导率的 100%)、高透光率(>70%,400-900nm 范围内)和良好的面电阻(<50 Ω sq)的新型混合电极。这些优异的性能归因于 Ag 中形成的纳米颗粒状形貌赋予的可逆相分离。由于这种离散的纳米形态,该 Ag 电极中的自由体积易受施加的拉伸应变影响,并且随之而来的电导率变化使得能够实现高效的应变传感器。此外,使用这种电极(在褶皱支架的辅助下增强活性层的拉伸性)的代表性 PTB7-th:PCBM 有机光伏 (OPV) 可以展示 6%的功率转换效率 (PCE) 和高变形性,在 20%应变下拉伸 50 个循环后,其 75%的原始 PCE 得以保留。同时,由 PTB7-th:N2200 共混物组成的代表性全聚合物 OPV 中,N2200 的机械拉伸性优于 PCBM,在不使用褶皱支架的情况下,在 20%应变下拉伸 50 个循环后,仍可保持超过 96%的原始 PCE。在可拉伸 OPV 中取得如此有前景的性能,在迄今为止报道的结果中属于最先进的水平。

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