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Monolithic CIGS-Perovskite Tandem Cell for an Optimal Light Harvesting Without Current Matching

机译:单片CIGs-钙钛矿串联电池,无需电流匹配即可实现最佳光采集

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摘要

We present a novel monolithic architecture for optimal light harvesting in multijunction thin film solar cells. In the configuration we consider, formed by a perovskite (PVK) cell overlying a CIGS cell, the current extracted from the two different junctions is decoupled by the insertion of a dielectric nonperiodic photonic multilayer structure. This photonic multilayer is designed by an inverse integration approach to confine the incident sunlight above the PVK band gap in the PVK absorber layer, while increasing the transparency for sunlight below the PVK band gap for an efficient coupling into the CIGS bottom cell. To match the maximum power point voltages in a parallel connection of the PVK and CIGS cells, the latter is divided into two subcells by means of a standard three-laser scribing connection. Using realistic parameters for all the layers in the multijunction architecture we predict power conversion efficiencies of 28%. This represents an improvement of 24% and 26% over the best CIGS and PVK single-junction cells, respectively, while at the same time outperforms the corresponding current-matched standard tandem configuration by more than two percentage points.
机译:我们提出了一种新颖的单片架构,以在多结薄膜太阳能电池中获得最佳的光收集。在我们考虑的配置中,由覆盖CIGS电池的钙钛矿(PVK)电池形成,通过插入电介质非周期性光子多层结构来解耦从两个不同结提取的电流。通过反向积分方法设计该光子多层体,以将入射阳光限制在PVK吸收层中PVK带隙上方,同时增加对PVK带隙以下的阳光的透明度,以有效耦合至CIGS底部电池。为了匹配PVK和CIGS电池并联连接中的最大功率点电压,通过标准的三激光划片连接将后者分为两个子电池。使用多结架构中所有层的实际参数,我们预计功率转换效率为28%。与最佳的CIGS和PVK单结电池相比,这分别代表了24%和26%的改善,而同时,其性能优于相应的电流匹配标准串联配置超过两个百分点。

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