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Quantitative X-ray absorption and emission spectroscopies: electronic structure elucidation of Cu2S and CuS

机译:定量X射线吸收和发射光谱:Cu2S和CuS的电子结构解析

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Cu2S and CuS have been under intense scrutiny, with the aim of understanding the relationship between their electronic structures and their commercially important physical properties. Here, X-ray absorption and emission spectroscopic data have been analyzed using a quantitative, molecular orbital (MO) based approach to understand the electronic structure of these two complex systems. Cu2S is shown to have a significant amount of Cu~(2+) sites and therefore Cu~0 centers. The presence of low-valent Cu is correlated with the electrical conductivity of Cu2S, especially at high temperatures. CuS is shown to have tetrahedral Cu~(2+) and trigonal Cu~(1+) sites, with crystal planes that have alternating high and low charge on the Cu centers. This alternating charge density may contribute to internal energy transitions required for photoluminescence properties. The in-depth electronic structure solutions presented here not only solve a complicated much-debated problem, but also demonstrate the strength of a quantitative MO based approach to X-ray spectroscopies.
机译:Cu2S和CuS受到严格审查,目的是了解它们的电子结构与其商业上重要的物理性能之间的关系。在这里,已经使用基于定量分子轨道(MO)的方法分析了X射线吸收和发射光谱数据,以了解这两个复杂系统的电子结构。 Cu 2 S显示具有大量的Cu〜(2+)位点,因此Cu〜0中心。低价Cu的存在与Cu2S的电导率相关,特别是在高温下。显示出CuS具有四面体Cu〜(2+)和三角Cu〜(1+)位,且晶体平面在Cu中心具有交替的高和低电荷。这种交替的电荷密度可有助于光致发光特性所需的内部能量跃迁。这里介绍的深入的电子结构解决方案不仅解决了一个复杂的争论不休的问题,而且展示了基于MO的定量X射线光谱学方法的优势。

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