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Secondary phases and their influence on the composition of the kesterite phase in CZTS and CZTSe thin films

机译:CZTS和CZTSe薄膜中的次生相及其对硅藻土相组成的影响

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Secondary phases zinc sulfide/selenide and copper sulfide in Cu2ZnSnS4 (CZTS) and Cu2ZnSnSe4 (CZTSe) thin film samples are investigated by X-ray absorption near edge structure (XANES) analysis at the chalcogen K-edges. Because of the formation of secondary phases the composition of the kesterite phase can deviate significantly from the total sample composition. For a large set of non-stoichiometric samples we find that the cation ratios of the kesterite phase never exceed Zn/Sn = 1 even for Zn-rich CZTS and CZTSe, with all excess Zn being contained in secondary phases. For CZTS the cation ratios are found to be additionally constrained by Cu/Sn <= 2, which means that Cu-excess always leads to the formation of CuxS secondary phases. These results give clear bounds on the Cu-rich and Zn-rich sides of the single phase region in polycrystalline CZTS/Se thin films.
机译:通过在硫族元素K边缘进行X射线吸收近边缘结构(XANES)分析,研究了Cu2ZnSnS4(CZTS)和Cu2ZnSnSe4(CZTSe)薄膜样品中的次级相硫化锌/硒化物和硫化铜。由于次生相的形成,硅藻土相的组成可能与总样品组成明显不同。对于大量的非化学计量样品,我们发现,即使对于富锌的CZTS和CZTSe,钾钛矿相的阳离子比也不会超过Zn / Sn = 1,所有过量的Zn都包含在第二相中。对于CZTS,发现阳离子比率还受Cu / Sn <= 2的约束,这意味着过量的Cu总是导致CuxS二次相的形成。这些结果在多晶CZTS / Se薄膜的单相区的富铜和富锌侧上给出了清晰的界限。

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