Ab-initio assessment of new sulfo-iodide compounds as candidate top-cell materials for silicon-based multi-junction tandem solar cells

R. Patterson, Wenhao Xu, S. Wei, M. Green, X. Hao
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Abstract

New semiconductors having the potential for excellent performance, scalable manufacturing and stability on a 25 year horizon are needed to enable silicon tandem solar cells. Here we explore theoretically a new class of non-toxic sulfoiodide compounds (CuxZnySyIx) has the potential to crystallize with the 4-fold coordinated “adamantine” structure. The band gaps predicted may be suitable for silicon multi-junction tandems. Initial calculations show tolerance to Cu vacancies, which do not appear to lead to deep levels in the band gap. These materials could potentially offer the “best of both worlds,” solution processability like an iodide and improved stability like a sulfide.
新型碘化亚砜化合物作为硅基多结串联太阳能电池顶电池候选材料的从头算评估
硅串联太阳能电池需要具有优异性能、可扩展制造和25年稳定性的新型半导体。在这里,我们从理论上探索了一类新的无毒的硫化物化合物(CuxZnySyIx),它具有4层配位“金刚烷”结构结晶的潜力。所预测的带隙可能适用于硅多结串联。最初的计算显示了对Cu空位的容忍,这似乎不会导致带隙的深度。这些材料可能会提供“两全其美”的效果,像碘化物一样具有溶液可加工性,又像硫化物一样具有更好的稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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