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基于柔性基底的倒金字塔形微纳结构对有机和钙钛矿太阳能电池的双重陷光和疏水效应。

Dual Light Trapping and Water-Repellent Effects of a Flexible-Based Inverse Micro-Cone Array for Organic and Perovskite Solar Cells.

机构信息

Department of Electrical Engineering , Universitas Prima Indonesia , Medan 20118 , Indonesia.

出版信息

ACS Appl Mater Interfaces. 2018 Sep 19;10(37):31291-31299. doi: 10.1021/acsami.8b08669. Epub 2018 Sep 5.

Abstract

A simple and cost-effective fabrication process of a flexible-based inverse micro-cone array (i-MCA) structure textured on flexible transparent conductive electrodes (TCEs) was successfully demonstrated via a micro-imprinting process. The flexible i-MCA films exhibited an extremely high total transmittance of ∼93% and a haze of ∼95% with reduced reflectance while simultaneously demonstrating water-repellent properties. Introducing i-MCA on the illuminating side of organic solar cells (OSCs)- and perovskite solar cells-rigid glass substrate showed improved power conversion efficiencies (PCEs) due to the light trapping effect by multiple light bounces between cone array structures (forward scattering). This results in an increase of the optical path length in the photoactive layer. Similarly, flexible TCEs embedded with textured i-MCA increased the PCE by 14% for flexible OSCs. More importantly, i-MCA-TCE-based OSCs were highly flexible with 98% retention from the initial PCE at both 0° and at 60° even after 2000 bending cycles at a radius of 2 mm. This finding demonstrates that textured i-MCA is promising for improving: (a) the light harvesting efficiency of solar cells when installed in low-/high-latitude locations and (b) the wearable technology where a flexible device attached on curved objects could retain the PCE, even at an oblique angle, with respect to the normal incidence angle.

摘要

通过微压印工艺,成功展示了一种在柔性透明导电电极(TCE)上制造具有成本效益的柔性倒置微锥阵列(i-MCA)结构的简单方法。柔性 i-MCA 薄膜具有极高的总透光率约为 93%,雾度约为 95%,同时反射率降低,具有疏水性。在有机太阳能电池(OSC)和钙钛矿太阳能电池的透光侧引入 i-MCA 刚性玻璃基板,由于在锥阵列结构之间多次光反射(前向散射)的光捕获效应,提高了功率转换效率(PCE)。这导致光活性层中的光程增加。同样,在柔性 TCE 中嵌入具有纹理化 i-MCA 可使柔性 OSC 的 PCE 提高 14%。更重要的是,基于 i-MCA-TCE 的 OSC 非常灵活,在 0°和 60°下初始 PCE 的保留率为 98%,即使在半径为 2mm 的情况下经过 2000 次弯曲循环也能保持。这一发现表明,纹理化 i-MCA 有望提高:(a)在低/高纬度地区安装时太阳能电池的光捕获效率,以及(b)在可穿戴技术中,附着在曲面上的柔性设备即使在相对于法向入射角度的倾斜角度,也能保持 PCE。

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