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Pinning down high-performance Cu-chalcogenides as thin-film solar cell absorbers: A successive screening approach

机译:固定高性能铜硫族化物作为薄膜太阳能电池吸收剂:一种连续的筛选方法

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摘要

Photovoltaic performances of Cu-chalcogenides solar cells are strongly correlated with the absorber fundamental properties such as optimal bandgap, desired band alignment with window material, and high photon absorption ability. According to these criteria, we carry out a successive screening for 90 Cu-chalcogenides using efficient theoretical approaches. Besides the well-recognized CuInSe2 and Cu2ZnSnSe4 materials, several novel candidates are identified to have optimal bandgaps of around 1.0-1.5 eV, spike-like band alignments with CdS window layer, sharp photon absorption edges, and high absorption coefficients. These new systems have great potential to be superior absorbers for photovolatic applications if their carrrier transport and defect properties are properly optimized. Published by AIP Publishing.
机译:Cu-硫族化物太阳能电池的光伏性能与吸收器的基本性能密切相关,例如最佳的带隙,与窗材料的所需能带对准以及高的光子吸收能力。根据这些标准,我们使用有效的理论方法对90种铜硫属元素化物进行了连续筛选。除了公认的CuInSe2和Cu2ZnSnSe4材料之外,还发现了几种新型候选材料,它们的最佳带隙约为1.0-1.5 eV,具有CdS窗口层的尖峰状能带排列,清晰的光子吸收边缘和高吸收系数。如果适当地优化了其载流子传输和缺陷性质,这些新系统具有巨大的潜力,可以成为光电子应用的优质吸收剂。由AIP Publishing发布。

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