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Cation and anion substitutions in hybrid perovskites: solubility limits and phase stabilizing effects

机译:杂钙钛矿中的阳离子和阴离子取代:溶解度限制和相稳定作用

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) are semiconductor materials setting the basis for the development of highly efficient, low-cost and multijunction solar energy conversion devices. The best efficiencies nowadays are obtained with mixed compositions containing methylammonium, formamidinium, Cs and Rb as well as iodine, bromine and chlorine as anions. The understanding of fundamental properties such as crystal structure and its effect on the band gap, as well as their phase stability is essential. In this systematic study X-ray diffraction and photoluminescense spectroscopy were applied to evaluate structural and optoelectronic properties of hybrid perovskites with mixed compositions.
机译:)是半导体材料,是发展高效,低成本和多结太阳能转换器件的基础。如今,使用含有甲基铵,甲ami,Cs和Rb以及碘,溴和氯作为阴离子的混合组合物可获得最佳的效率。对基本特性(例如晶体结构及其对带隙的影响)及其相稳定性的理解至关重要。在这项系统研究中,X射线衍射和光致发光光谱法被用于评估具有混合成分的杂化钙钛矿的结构和光电性能。

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