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首页> 外文期刊>Chemistry: A European journal >DFT modeling of silver disorder and mobility in the semiconductor cluster [Ag28S26(P(O)PhOMe)(12)(PPh3)(12)]
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DFT modeling of silver disorder and mobility in the semiconductor cluster [Ag28S26(P(O)PhOMe)(12)(PPh3)(12)]

机译:半导体簇中银无序和迁移率的DFT建模[Ag28S26(P(O)PhOMe)(12)(PPh3)(12)]

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Disorder of silver atoms and high cation mobility are commonly observed and closely coupled features in silver chalcogenides. The ligand-stabilized cluster [Ag-28(mu(6)-S)(2){ArP(O)S-2}(12)(PPh3)(12)] (1) (Ar = 4-anisyl), with a total of 666 atoms, displays in its X-ray structure highly localized disorder at two core silver atoms. To explore the nature of this disorder, we have applied density functional methods to its internal structure and flexibility. The pseudo-S-6 symmetry of the cluster provides six equivalent pockets to place the pair of silver atoms, and with the exception of populating neighboring sites, all permutations relax to structures with similar cores. The barrier to concerted motion of the central silver atoms from one set of pockets to the next of the C-i-symmetric conformer is estimated to be less than about 26 kJmol(-1). Cluster 1 can be considered a model for bulk phase cation mobility.
机译:银硫属元素化物中通常观察到银原子的无序和高阳离子迁移率,并且具有紧密耦合的特征。配体稳定簇[Ag-28(mu(6)-S)(2){ArP(O)S-2}(12)(PPh3)(12)](1)(Ar = 4-茴香基),总共有666个原子的X射线结构在两个核心银原子上显示出高度局部的无序。为了探索这种疾病的性质,我们将密度泛函方法应用于其内部结构和灵活性。簇的伪S-6对称性提供了六个等价的口袋来放置这对银原子,并且除了人口众多的相邻位点之外,所有排列都松弛为具有相似核心的结构。中心银原子从一组凹穴到下一个C-i对称构象异构体协调运动的壁垒估计小于约26 kJmol(-1)。簇1可以被认为是本体相阳离子迁移率的模型。

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