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Perovskite modules with 99% geometrical fill factor using point contact interconnections design

机译:Perovskite模块,使用点联系互连设计99%的几何填充因子

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摘要

Thin-film photovoltaic technology, based on hybrid metal halide perovskites, has achieved 25.2% and 16.1% certified power conversion efficiencies for solar cell and solar module devices, respectively. Still, the gap between power conversion efficiency of small area solar cells and large area solar modules is greater than for any other photovoltaic technology. Analysis of loss mechanisms in n-i-p solution processed devices defined layer inhomogeneity loss and inactive area loss as the two most prominent loss mechanisms in upscaling. In this study, we focus on minimizing inactive area loss. We analyze the point contact interconnections design and demonstrate it on perovskite thin-film solar modules to achieve a geometrical fill factor of up to 99%. Numerical and analytical simulations are utilized to optimize interconnections and solar module design and balance inactive area loss, series resistance loss, and contact resistance loss.
机译:基于混合金属卤化物钙钛矿的薄膜光伏技术,在太阳能电池和太阳能组件设备上分别达到了25.2%和16.1%的认证功率转换效率。不过,小面积太阳能电池和大面积太阳能组件的功率转换效率之间的差距比任何其他光伏技术都大。对n-i-p溶液处理器件中损耗机制的分析将层不均匀性损耗和非活动区域损耗定义为放大过程中最显著的两种损耗机制。在这项研究中,我们专注于最小化非活动区域损失。我们分析了点接触互连设计,并在钙钛矿薄膜太阳能组件上进行了演示,以实现高达99%的几何填充因子。数值和分析模拟用于优化互连和太阳能组件设计,并平衡非活动区域损耗、串联电阻损耗和接触电阻损耗。

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