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首页> 外文期刊>Photovoltaics, IEEE Journal of >Back-Contacted Silicon Heterojunction Solar Cells: Optical-Loss Analysis and Mitigation
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Back-Contacted Silicon Heterojunction Solar Cells: Optical-Loss Analysis and Mitigation

机译:背接触式硅异质结太阳能电池:光学损耗分析和缓解

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摘要

We analyze the optical losses that occur in interdigitated back-contacted amorphous/crystalline silicon heterojunction solar cells. We show that in our devices, the main loss mechanisms are similar to those of two-side contacted heterojunction solar cells. These include reflection and escape-light losses, as well as parasitic absorption in the front passivation layers and rear contact stacks. We then provide practical guidelines to mitigate such reflection and parasitic absorption losses at the front side of our solar cells, aiming at increasing the short-circuit current density in actual devices. Applying these rules, we processed a back-contacted silicon heterojunction solar cell featuring a short-circuit current density of 40.9 mA/cm and a conversion efficiency of 22.0%. Finally, we show that further progress will require addressing the optical losses occurring at the rear electrodes of the back-contacted devices.
机译:我们分析了叉指式背接触非晶/晶体硅异质结太阳能电池中发生的光损耗。我们表明,在我们的设备中,主要损耗机制与两侧接触异质结太阳能电池的类似。这些包括反射和逃逸光损失,以及前钝化层和后触点堆叠中的寄生吸收。然后,我们提供了实用的指南来减轻太阳能电池正面的此类反射和寄生吸收损耗,旨在增加实际设备中的短路电流密度。应用这些规则,我们处理了背接触式硅异质结太阳能电池,其短路电流密度为40.9mA / cm,转换效率为22.0%。最后,我们表明,进一步的进步将需要解决发生在背接触式器件的后电极处的光学损耗。

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