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Towards an accurate gold carbonyl binding energy in AuCO+: Basis set convergence and a comparison between density functional and conventional methods

机译:寻求AuCO +中准确的羰基金结合能:基集收敛以及密度泛函方法与常规方法的比较

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The binding energy of the ground-state AuCO+ molecule has been systematically investigated using quantum chemical methods such as various density functionals and correlated wave function based approaches like, second order Moller-Plesset perturbation and the coupled cluster ansatz with perturbative treatment of triple excitations, These were combined with a total of 14 relativistic effective core potential/valence and all-electron basis sets of increasing flexibility for gold and CO, respectively, Special emphasis is paid to the role of the basis set superposition error and the relevance of different ways to improve the one particle basis sets, A significant effect on the basis set superposition error is observed in the density functional schemes upon enlarging the valence basis sets, (C) 1998 American Institute of Physics. [S0021-9606(98)02110-2]. [References: 53]
机译:基态AuCO +分子的结合能已使用量子化学方法进行了系统研究,例如各种密度泛函和基于相关波函数的方法,如二阶Moller-Plesset摄动和耦合簇ansatz的摄动处理三重激发,这些分别结合了14种相对论的有效核心电势/价态和全电子基集,分别提高了金和CO的柔韧性,特别强调了基集叠加误差的作用以及不同改进方法的相关性一个粒子基集,当化合价基集增大时,在密度泛函方案中观察到了对基集叠加误差的显着影响,(C)1998年美国物理研究所。 [S0021-9606(98)02110-2]。 [参考:53]

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