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Prediction of a New Phase of CuxS near Stoichiometric Composition

机译:接近化学计量组成的CuxS新相的预测

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Cu2S is known to be a promising solar absorber material due to its suitable band gap and the abundance of its constituent elements. Cu2S is known to have complex phase structures depending on the concentration of Cu vacancies. Its instability of phases is due to favorable formation of Cu vacancies and the mobility of Cu atoms within the crystal. Understanding its phase structures is of crucial important for its application as solar absorber material. In this paper, we have predicted a new crystal phase of copper sulfide (CuxS) around chemical composition ofx=1.98by utilizing crystal database search and density functional theory. We have shown that this new crystal phase of CuxS is more favorable than low chalcocite structure even at stoichiometric composition ofx=2. However, Cu vacancy formation probability was found to be higher in this new phase than the low chalcocite structure.
机译:由于其合适的带隙和其组成元素的丰度,Cu2S被公认为是一种有前途的太阳能吸收材料。已知Cu 2 S具有复杂的相结构,这取决于Cu空位的浓度。其相的不稳定性归因于铜空位的良好形成和晶体内铜原子的迁移。了解其相结构对于其作为太阳能吸收材料的应用至关重要。在本文中,我们利用晶体数据库搜索和密度泛函理论,预测了化学组成为x = 1.98的硫化铜(CuxS)的新晶相。我们已经表明,即使在化学计量组成为x = 2的情况下,这种新的CuxS晶相也比低辉石结构更有利。但是,在该新相中发现铜空位形成的可能性比低辉石结构高。

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