College of Chemistry, Nanchang University , 999 Xuefu Avenue, Nanchang 330031, China.
Jiangxi Provincial Key Laboratory of New Energy Chemistry/Institute of Polymers, Nanchang University , Nanchang 330031, China.
ACS Appl Mater Interfaces. 2017 Aug 9;9(31):26468-26475. doi: 10.1021/acsami.7b08606. Epub 2017 Jul 31.
With recent emergence of wearable electronic devices, flexible and stretchable transparent electrodes are the core components to realize innovative devices. The copper nanowire (CuNW) network is commonly chosen because of its high conductivity and transparency. However, the junction resistances and low aspect ratios still limit its further stretchable performance. Herein, a large-scale stretchable semiembedded CuNW transparent conductive film (TCF) was fabricated by electrolessly depositing Cu on the electrospun poly(4-vinylpyridine) polymer template semiembedded in polydimethylsiloxane. Compared with traditional CuNWs, which are as-coated on the flexible substrate, the semiembedded CuNW TCFs showed low sheet resistance (15.6 Ω·sq at ∼82% transmittance) as well as outstanding stretchability and mechanical stability. The light-emitting diode connected the stretchable semiembedded CuNW TCFs in the electric circuit still lighted up even after stretching with 25% strain. Moreover, this semiembedded CuNW TCF was successfully applied in polymer solar cells as a stretchable conductive electrode, which yielded a power conversion efficiency of 4.6% with 0.1 cm effective area. The large-scale stretchable CuNW TCFs show potential for the development of wearable electronic devices.
随着可穿戴电子设备的最新出现,灵活可拉伸透明电极是实现创新设备的核心组件。由于其高导电性和透明度,铜纳米线 (CuNW) 网络通常是首选。然而,结电阻和低纵横比仍然限制了其进一步的可拉伸性能。本文通过在半嵌入聚二甲基硅氧烷中的电纺聚 4-乙烯基吡啶聚合物模板上电沉积 Cu,制备了一种大规模可拉伸半嵌入 CuNW 透明导电膜 (TCF)。与传统的涂覆在柔性基底上的 CuNW 相比,半嵌入 CuNW TCF 具有低面电阻(在约 82%透光率下为 15.6 Ω·sq)以及出色的拉伸性和机械稳定性。连接可拉伸半嵌入 CuNW TCF 的发光二极管即使在 25%应变下拉伸后仍能点亮。此外,该半嵌入 CuNW TCF 成功应用于聚合物太阳能电池作为可拉伸导电电极,在有效面积为 0.1 cm 时,其功率转换效率为 4.6%。这种大规模的可拉伸 CuNW TCF 具有开发可穿戴电子设备的潜力。