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首页> 外文期刊>The Journal of Chemical Physics >Benchmark calculations with correlated molecular wave functions. IX. The weakly bound complexes Ar-H-2 and Ar-HCl
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Benchmark calculations with correlated molecular wave functions. IX. The weakly bound complexes Ar-H-2 and Ar-HCl

机译:具有相关分子波函数的基准计算。九。弱键合配合物Ar-H-2和Ar-HCl

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The interaction of Ar with H-2; and HCl has been studied using Moller-Plesset perturbation theory (MP2, MP3, MP4) and coupled-duster [CCSD, CCSD(T)] methods with augmented correlation consistent basis sets. Basis sets as large as triply augmented quadruple zeta quality were used to investigate the convergence trends. Interaction energies were determined using the supermolecule approach with the counterpoise correction to account for basis set superposition error. Comparison with the available empirical potentials finds excellent agreement for both binding energies and transition state. For Ar-H-2, the estimated complete basis set (CBS) limits for the binding energies of the two equivalent minima and the connecting transition state (TS) are, respectively, 55 and 47 cm(-1) at the MP4 level and 54 and 46 cm(-1) at the CCSD(T) level, respectively [the XC(fit) empirical potential of Bissonnette et al. [J. Chem. Phys. 105, 2634 (1996)] yields 56.6 and 47.8 cm(-1) for H2 (upsilon = 0)]. The estimated CBS limits for the binding energies of the two minima and transition state of Ar-HCl are 185, 155, and 109 cm(-1) at the MP4 level and 176, 147, and 105 cm(-1) at the CCSD(T) level, respectively [the H6(4,3,0) empirical potential of Hutson [J. Phys. Chem. 96, 4237 (1992)] yields 176.0, 148.3, and 103.3 cm(-1) for HC1 (u = 0)], Basis sets containing diffuse functions of (dfg) symmetries were found to be essential for accurately modeling these two complexes, which are largely bound by dispersion and induction forces. Highly correlated wave functions were also required for accurate results. This was found to be particularly true for ArHCl, where significant differences in calculated binding energies were observed between MP2, MP4, and CCSD(T). (C) 1998 American Institute of Physics. [References: 46]
机译:Ar与H-2的相互作用; HCl已使用Moller-Plesset微扰理论(MP2,MP3,MP4)和耦合除尘器[CCSD,CCSD(T)]方法进行了研究,并采用了相关一致性一致的基础集。使用三倍增加的四重zeta质量的基集来研究收敛趋势。相互作用能使用超分子方法和平衡力校正法确定,以解决基体叠加误差。与可用的经验电势进行比较发现,对于结合能和过渡态都具有极好的一致性。对于Ar-H-2,两个等效极小值和连接过渡态(TS)的结合能的估计完整基集(CBS)极限在MP4级别分别为55和47 cm(-1),并且在CCSD(T)水平分别为54和46 cm(-1)[Bissonnette等人的XC(fit)经验潜力。 [J.化学物理105,2634(1996)]对于H2(upsilon = 0)产生56.6和47.8 cm(-1)]。估算的两个最小结合能和Ar-HCl的过渡态的CBS极限在MP4处为185、155和109 cm(-1),在CCSD处为176、147和105 cm(-1) (T)级别分别[Hutson的H6(4,3,0)经验潜力[J.物理化学[96,4237(1992)]对HC1(u = 0)的产率为176.0、148.3和103.3 cm(-1)],发现包含(dfg)对称性的扩散函数的基集对于准确地对这两个络合物进行建模至关重要,它们主要受分散力和感应力的约束。为了获得准确的结果,还需要高度相关的波动函数。发现对于ArHCl尤其如此,其中在MP2,MP4和CCSD(T)之间观察到计算的结合能的显着差异。 (C)1998美国物理研究所。 [参考:46]

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