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首页> 外文期刊>The Journal of Chemical Physics >Theoretical analysis of structures and electronic spectra in molecular cadmium chalcogenide clusters
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Theoretical analysis of structures and electronic spectra in molecular cadmium chalcogenide clusters

机译:分子硫属硫化物簇的结构和电子光谱的理论分析

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We present calculated structural and optical properties of molecular cadmium chalcogenide non-stoichiometric clusters with a size range of less than 1 nm to more than 2 nm with well-defined chemical compositions and structures in comparison to experimental characterization and previous theoretical work. A unified treatment of these clusters to obtain a fundamental understanding of the size, ligand, and solvation effects on their optical properties has not been heretofore presented. The clusters belong to three topological classes, specifically supertetrahedral (Tn), penta-supertetrahedral (Pn), and capped supertetrahedral (Cn), where n is the number of metal layers in each cluster. The tetrahedrally shaped Tn clusters examined in this work are Cd(ER)(4)(2-) (T1), Cd-4(ER)(10)(2-) (T2), and Cd10E4'(ER)(16)(4-) (T3), where R is an organic group, E and E' are chalcogen atoms (sulfur or selenium). The first member of the Pn series considered is M8E'(ER)(16)(2-). For the Cn series, we consider the first three members, M17E4'(ER)(28)(2-), M32E14'(ER)(36)L-4, and M54E32'(ER)(48)L-4(4-) (L = neutral ligand). Mixed ligand clusters with capping ER groups replaced by halogen or neutral ligands were also considered. Ligands and solvent were found to have a large influence on the color and intensity of the electronic absorption spectra of small clusters. Their effects are generally reduced with increasing cluster sizes. Blueshifts were observed for the first electronic transition with reduced size for both cadmium sulfide and cadmium selenide series. Due to weakly absorbing and forbidden transitions underlying the one-photon spectra, more care is needed in interpreting the quantum confinement from the clusters' lowest-energy absorption bands. (C) 2015 AIP Publishing LLC.
机译:我们提供了分子结构硫属元素化物非化学计量簇的计算结构和光学性质,与实验表征和先前的理论工作相比,分子簇的尺寸范围小于1 nm至大于2 nm,具有明确定义的化学组成和结构。迄今为止,尚未提出对这些团簇的统一处理以获得对它们的光学性质的大小,配体和溶剂化作用的基本了解。这些簇属于三个拓扑类别,特别是超四面体(Tn),五-超四面体(Pn)和带帽超四面体(Cn),其中n是每个簇中的金属层数。在这项工作中检查的四面体形状的Tn簇是Cd(ER)(4)(2-)(T1),Cd-4(ER)(10)(2-)(T2)和Cd10E4'(ER)(16 )(4-)(T3),其中R是有机基团,E和E'是硫族原子(硫或硒)。所考虑的Pn系列的第一个成员是M8E'(ER)(16)(2-)。对于Cn系列,我们考虑前三个成员M17E4'(ER)(28)(2-),M32E14'(ER)(36)L-4和M54E32'(ER)(48)L-4( 4-)(L =中性配体)。还考虑了具有被卤素或中性配体取代的封端ER基团的混合配体簇。发现配体和溶剂对小团簇的电子吸收光谱的颜色和强度有很大的影响。随着群集大小的增加,它们的影响通常会降低。对于硫化镉和硒化镉系列,首次电子跃迁均观察到蓝移,尺寸减小。由于在单光子光谱下存在弱吸收和禁止跃迁,因此在从团簇的最低能量吸收谱带解释量子约束时需要格外小心。 (C)2015 AIP Publishing LLC。

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