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使用溶液处理的氧化铝对碲化镉太阳能电池进行背表面钝化

Back-Surface Passivation of CdTe Solar Cells Using Solution-Processed Oxidized Aluminum.

作者信息

Alfadhili Fadhil K, Phillips Adam B, Subedi Kamala Khanal, Perkins Craig L, Halaoui Adam I, Jamarkattel Manoj K, Anwar Bhuiyan M, Liyanage Geethika K, Li Deng-Bing, Grice Corey R, Yan Yanfa, Ellingson Randy J, Heben Michael J

机构信息

Wright Center for Photovoltaics Innovation and Commercialization, Department of Physics and Astronomy, University of Toledo, Toledo, Ohio 43606, United States.

National Renewable Energy Laboratory, Golden, Colorado 80401, United States.

出版信息

ACS Appl Mater Interfaces. 2020 Nov 18;12(46):51337-51343. doi: 10.1021/acsami.0c12800. Epub 2020 Nov 4.

Abstract

Although back-surface passivation plays an important role in high-efficiency photovoltaics, it has not yet been definitively demonstrated for CdTe. Here, we present a solution-based process, which achieves passivation and improved electrical performance when very small amounts of oxidized Al species are deposited at the back surface of CdTe devices. The open circuit voltage () is increased and the fill factor (FF) and photoconversion efficiency (PCE) are optimized when the total amount added corresponds to ∼1 monolayer, suggesting that the passivation is surface specific. Addition of further Al species, present in a sparse alumina-like layer, causes the FF and PCE to drop as the interface layer becomes blocking to current flow. The optimized deposit increases the average baseline PCE for both Cu-free devices and devices where Cu is present as a dopant. The greatest improvement is found when the Al species are deposited prior to the CdCl activation step and Cu is employed. In this case, the best-cell efficiency was improved from 12.6 to 14.4%. Time-resolved photoluminescence measurements at the back surface and quantum efficiency measurements performed at the maximum power point indicate that the performance enhancement is due to a reduction in the interface recombination current at the back surface.

摘要

尽管背表面钝化在高效光伏电池中起着重要作用,但尚未在碲化镉(CdTe)中得到明确证实。在此,我们提出一种基于溶液的工艺,当在CdTe器件的背表面沉积极少量的氧化铝物种时,该工艺可实现钝化并改善电性能。当添加的总量相当于约1个单层时,开路电压()增加,填充因子(FF)和光电转换效率(PCE)得到优化,这表明钝化是表面特异性的。在稀疏的氧化铝样层中存在的进一步铝物种的添加,会导致FF和PCE下降,因为界面层对电流流动变得具有阻挡性。优化后的沉积物提高了无铜器件和以铜作为掺杂剂的器件的平均基线PCE。当在CdCl激活步骤之前沉积铝物种并使用铜时,发现改善最为显著。在这种情况下,最佳电池效率从12.6%提高到了14.4%。背表面的时间分辨光致发光测量和在最大功率点进行的量子效率测量表明,性能增强归因于背表面界面复合电流的降低。

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