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A crystallographic description of experimentally identified formation reactions of Cu(In,Ga)Se-2

机译:晶体学描述的实验确定的Cu(In,Ga)Se-2的形成反应

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This work describes solid-state reactions for the formation of the chalcopyrite compounds CuInSe2, CuGaSe2 and Cu(In,Ga)Se-2 on atomic scale. The most important chalcopyrite formation reactions which were identified by the authors by real-time in situ X-ray diffraction in preceding experiments are (A) CuSe + InSe -> CuInSe2, (B) Cu2Se + 2 InSe + Se -> 2 CuInSe2 and (C) Cu2Se + In2Se3 -> 2 CuInSe2. During the selenistaion of a metallic precursor containing gallium a separate fourth reaction occurs: (D) Cu2Se + Ga2Se3 -> 2 CuGaSe2. The quaternary compound is finally formed by interdiffusion of CuInSe2 with CuGaSe2 (E). These five reactions differ in their activation energy and reaction speed. We explain these differences qualitatively by analysing the involved crystal structures for each reaction. It turns out that all reactions involved in the formation of Cu(In,Ga)Se-2 are promoted by epitaxial relations, which facilitates the formation of polycrystalline thin films at temperatures much below those necessary for single crystal growth. Recommendations for the growth of larger grains of Cu(In,Ga)Se-2 containing fewer defects are given. (c) 2006 Elsevier Inc. All rights reserved.
机译:这项工作描述了固态反应形成黄铜矿化合物CuInSe2,CuGaSe2和Cu(In,Ga)Se-2的原子尺度。作者在先前的实验中通过实时原位X射线衍射确定的最重要的黄铜矿形成反应是(A)CuSe + InSe-> CuInSe2,(B)Cu2Se + 2 InSe + Se-> 2 CuInSe2和(C)Cu2Se + In2Se3-> 2 CuInSe2。在含镓的金属前体的硒化期间,发生单独的第四反应:(D)Cu 2 Se + Ga 2 Se 3-> 2 CuGaSe 2。最终通过CuInSe2与CuGaSe2(E)相互扩散形成四元化合物。这五个反应的活化能和反应速度不同。我们通过分析每个反应涉及的晶体结构来定性地解释这些差异。事实证明,外延关系促进了与Cu(In,Ga)Se-2形成有关的所有反应,这有助于在远低于单晶生长所需温度的温度下形成多晶薄膜。给出了生长具有较少缺陷的较大晶粒的Cu(In,Ga)Se-2的建议。 (c)2006 Elsevier Inc.保留所有权利。

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