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首页> 外文期刊>The Journal of Chemical Physics >Ab initio relativistic pseudopotential study of small silver and gold sulfide clusters (M2S)(n), n = 1 and 2
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Ab initio relativistic pseudopotential study of small silver and gold sulfide clusters (M2S)(n), n = 1 and 2

机译:小银和硫化金簇(M2S)(n)从头开始的相对论伪势研究,n = 1和2

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Small semiconductor silver and gold sulfide clusters (Ag2S)(n) and (Au2S)(n), n = 1,2, are studied by valence ab initio calculations with the inclusion of electron correlation at the second-order perturbation theory (MP2) and coupled-cluster [CCSD and CCSD(T)] levels. Various relativistic and nonrelativistic pseudopotentials are employed to describe the effects of core electrons. Correlation and relativistic effects re essential in determining the geometry and relative stability of monomer and dimer structures. Relativistic effects result in a notable decrease in the calculated interatomic distances, which is especially significant in the case of gold sulfide structures (up to 10%). Correlation effects markedly-increase the,stability of compact structures with an ir;creased number of relatively short M...M contacts (M...M distances of about 280-334 pm). Excluding the correlation of lower-lying valence orbitals (sulfur as and silver 4d or gold 5d) results;in completely opposite predictions. This fact suggests that the effects of d-d and 8-outer valence (metal ns and sulfur 3p) electron correlation give rise to attractive short-range interactions of intramolecular van der Waals type, which determine the increased stability of more compact cluster structures. However, large-core pseudopotentials strongly exaggerate this effect in the case of gold and give results rather different from those obtained with more valid and accurate small-core pseudopotentials. It is shown that the reason for this deficiency Lies in the nature of pseudopotentials themselves rather than in basis-set shortcomings. The atomization and dissociation energies, equilibrium geometrical parameters, dipole moments, and Mulliken populations are calculated and discussed. (C) 1998 American Institute of Physics. [S0021-9606(98)00631-X]. [References: 39]
机译:通过价态从头算计算研究了小的半导体银和金硫化物簇(Ag2S)(n)和(Au2S)(n),其中二阶扰动理论(MP2)包括电子相关性和耦合群集[CCSD和CCSD(T)]级别。各种相对论和非相对论的伪势被用来描述核心电子的影响。相关和相对论效应对于确定单体和二聚体结构的几何形状和相对稳定性至关重要。相对论效应导致计算出的原子间距离显着减小,这对于硫化金结构(高达10%)尤为明显。相关效应显着提高了具有ir的紧凑结构的稳定性;相对较短的M ... M触点(M ... M距离约为280-334 pm)数量增加了。排除低价化合价轨道的相关性(硫原子和银4d或金5d);结果完全相反。这一事实表明,d-d和8外价(金属ns和硫3p)电子相关性的影响引起了分子内范德华类型的吸引人的短程相互作用,这决定了更紧凑的团簇结构的稳定性增加。但是,在金的情况下,大核假电位会大大夸大这种效应,其结果与使用更有效和准确的小核假电位所获得的结果完全不同。结果表明,这种缺陷的原因在于假电位本身的性质,而不是基础缺陷。计算和讨论了雾化和离解能,平衡几何参数,偶极矩和Mulliken总体。 (C)1998美国物理研究所。 [S0021-9606(98)00631-X]。 [参考:39]

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