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Unexpected efficiency enhancement of flexible dye-sensitized solar cells by repeated outward bending

机译:反复向外弯曲会意外地提高柔性染料敏化太阳能电池的效率

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摘要

The photovoltaic performance of flexible dye-sensitized solar cells (DSCs) is generally degraded during bending activity which presents a typical flexible service condition. In this study, however, we report an unexpected efficiency enhancement of ca. 19% (i.e., from 3.88% to 4.62%) of flexible DSCs after repeated outward bending. The photovoltaic performance, electrochemical properties, mechanical properties and electrical properties were examined to understand the efficiency enhancement mechanism. It was found that the anisotropic evolution of particle-particle connection in the nanostructured TiO2 film, strengthening the electron transport in the out-plane (vertical to the TiO2 film surface) direction and weakening the electron transport in the in-plane (parallel to the TiO2 film surface) direction, is responsible for such an abnormal efficiency enhancement. Based on the results, an efficiency enhancement model for the flexible DSCs under repeated outward bending is proposed.
机译:柔性染料敏化太阳能电池(DSC)的光伏性能通常会在弯曲活动期间降低,这会带来典型的柔性工作条件。但是,在这项研究中,我们报告了ca的意外效率提高。反复向外弯曲后,获得19%(即从3.88%到4.62%)的柔性DSC。检查了光伏性能,电化学性能,机械性能和电性能,以了解效率增强机理。发现在纳米结构的TiO2薄膜中,颗粒与颗粒之间的各向异性演化,增强了电子在向外(垂直于TiO2薄膜表面)方向上的传输,并减弱了电子在垂直(平行于TiO2薄膜表面)的方向TiO2膜表面)方向,是造成这种异常效率提高的原因。基于结果,提出了柔性DSC在反复向外弯曲下的效率增强模型。

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