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Record Efficiencies for Selenium Photovoltaics and Application to Indoor Solar Cells

机译:硒光伏的效率记录及其在室内太阳能电池中的应用

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Until recently, Selenium photovoltaics remained overlooked and stalled with a last efficiency record of 5% established more than 30 years ago. We recently demonstrated a 30% increase in efficiency and a simultaneous reduction in thickness by a factor of 5x. Despite the expectation for continued improvements, selenium, with a bandgap of ~1.9 eV, is not well matched for a single junction outdoor AM1.5 spectrum, but selenium matches the indoor light spectrum of LED's and CFL's perfectly. In indoor lighting conditions we have achieved >13% efficiency which is more efficient than typical commercial a-Si and c-Si in indoor lighting, while fabrication is vastly simpler. Unlike alternative promising technologies such as perovskites, Se is both stable in air and has minimal toxicity risks. In this paper we will highlight the improvements in device structure and annealing that led to the recent record efficiency, and summarize the key variables and needs of solar cells for indoor applications.
机译:直到最近,硒光伏技术仍然被忽视和停滞不前,其30年前的最新效率记录为5%。我们最近证明,效率提高了30%,厚度同时降低了5倍。尽管期望得到持续改进,硒的带隙约为1.9 eV,不能很好地匹配单结室外AM1.5光谱,但是硒与LED和CFL的室内光谱完全匹配。在室内照明条件下,我们已经实现了> 13%的效率,比室内商用照明中的典型商用a-Si和c-Si效率更高,而制造却非常简单。与钙钛矿等替代有前景的技术不同,Se在空气中既稳定又具有最小的毒性风险。在本文中,我们将重点介绍器件结构和退火方面的改进,这些改进导致了近来创纪录的效率,并总结了室内应用中太阳能电池的关键变量和需求。

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