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Omnidirectional Light Capture by Solar Cells Mimicking the Structures of the Epidermal cells of Leaves

机译:通过太阳能电池模拟叶片表皮细胞的结构的太阳能电池捕获的全向光

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摘要

It is important to develop solar cells that can capture and utilize omnidirectional light in urban environments, where photovoltaic (PV) devices are installed in fixed directions. We report a new design for such light capture, which mimics the structure of a leaf epidermis. First, we analyzed the epidermal structures of different plant species in detail so that we could copy them and fabricate light-trapping layers with different shapes: as lens arrays, pillars, and lens arrays with rough surfaces. Then we analyzed the results of two-dimensional ray-tracing simulations of perfectly aligned and Gaussian-scattered incident light in terms of light-trapping capabilities. Based on these results, we prepared high-performance dye-sensitized solar cells with light-trapping layers that exhibited omnidirectional light capturing functionality. Our layers enhanced the efficiency of obliquely incident light capture by 70%. Therefore, we expect that new possibilities for next-generation PVs, extending beyond the current rigid concepts, will arise upon the application of these results and from findings that build on these results.
机译:开发可以在城市环境中捕获和利用全向光的太阳能电池,其中光伏(PV)器件安装在固定方向上。我们报告了这种光捕获的新设计,模仿叶片表皮的结构。首先,我们详细分析了不同植物物种的表皮结构,以便我们可以复制它们并制造具有不同形状的光捕获层:作为镜头阵列,柱子和具有粗糙表面的透镜阵列。然后,我们分析了在光捕获能力方面完美对齐和高斯分散的入射光的二维光线跟踪模拟的结果。基于这些结果,我们制备了高性能染料敏化的太阳能电池,具有呈现的光捕获层,其显示出全向光捕获功能。我们的层提高了倾斜入射光捕获的效率70%。因此,我们预计下一代PVS的新可能性超出了当前刚性概念,将在应用这些结果的应用时以及从这些结果上建立的结果。

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