首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Lattice and Valence Electronic Structures of Crystalline Octahedral Molybdenum Halide Clusters-Based Compounds, Cs-2[Mo6X14] (X = Cl, Br, I), Studied by Density Functional Theory Calculations
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Lattice and Valence Electronic Structures of Crystalline Octahedral Molybdenum Halide Clusters-Based Compounds, Cs-2[Mo6X14] (X = Cl, Br, I), Studied by Density Functional Theory Calculations

机译:基于结晶八面体钼卤化物簇的晶格和价电子结构基于密度函数理论计算研究的CS-2 [MO6X14](X = CL,BR,I)

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摘要

The electronic and crystal structures of Cs-2[Mo6X14] (X = Cl, Br, I) cluster-based compounds were investigated by density functional theory (DFT) simulations and experimental methods such as powder X-ray diffraction, ultraviolet visible spectroscopy, and X-ray photoemission spectroscopy (XPS). The experimentally determined lattice parameters were in good agreement with theoretically optimized ones, indicating the usefulness of DFT calculations for the structural investigation of these clusters. The calculated band gaps of these compounds reproduced those experimentally determined by UV vis reflectance within an error of a few tenths of an eV. Core-level XPS and effective charge analyses indicated bonding states of the halogens changed according to their sites. The XPS valence spectra were fairly well reproduced by simulations based on the projected electron density of states weighted with cross sections of Al K-infinity, suggesting that DFT calculations can predict the electronic properties of metal-cluster-based crystals with good accuracy.
机译:CS-2 [MO6X14](X = CL,BR,I)簇基化合物的电子和晶体结构被密度官能理论(DFT)模拟和实验方法等粉末X射线衍射,紫外线可见光谱,和X射线照相激光体光谱(XPS)。实验确定的晶格参数与理论上优化的吻合吻合良好,表明DFT计算对这些簇的结构调查的算法。这些化合物的计算带间隙再现通过UV VIS反射的实验确定的那些在EV的误差内。核心级XPS和有效电荷分析表明卤素的粘合状态根据其网站而改变。通过基于Al K-Infinity的横截面的突出的状态的突出的电子密度,XPS价光谱相当好地再现,表明DFT计算可以以良好的精度预测金属簇基晶体的电子性质。

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