Instituto de Física Fundamental, IFF-CSIC, Serrano 123, 28006 Madrid, Spain.
J Chem Phys. 2013 Jul 14;139(2):024308. doi: 10.1063/1.4812557.
Diffusion Monte Carlo (DMC) and path-integral Monte Carlo computations of the vibrational ground state and 10 K equilibrium state properties of the H7 (+)/D7 (+) cations are presented, using an ab initio full-dimensional potential energy surface. The DMC zero-point energies of dissociated fragments H5 (+)(D5 (+))+H2(D2) are also calculated and from these results and the electronic dissociation energy, dissociation energies, D0, of 752 ± 15 and 980 ± 14 cm(-1) are reported for H7 (+) and D7 (+), respectively. Due to the known error in the electronic dissociation energy of the potential surface, these quantities are underestimated by roughly 65 cm(-1). These values are rigorously determined for first time, and compared with previous theoretical estimates from electronic structure calculations using standard harmonic analysis, and available experimental measurements. Probability density distributions are also computed for the ground vibrational and 10 K state of H7 (+) and D7 (+). These are qualitatively described as a central H3 (+)/D3 (+) core surrounded by "solvent" H2/D2 molecules that nearly freely rotate.
呈现了使用从头算全维势能面的 H7 (+)/D7 (+) 阳离子振动基态和 10 K 平衡态性质的扩散蒙特卡罗 (DMC) 和路径积分蒙特卡罗计算。还计算了离解碎片 H5 (+)(D5 (+))+H2(D2) 的 DMC 零点能,并且根据这些结果和电子离解能,报道了 H7 (+) 和 D7 (+) 的离解能,D0 分别为 752 ± 15 和 980 ± 14 cm(-1)。由于势能面电子离解能的已知误差,这些量大约低估了 65 cm(-1)。这些值是首次严格确定的,并与以前使用标准谐波分析的电子结构计算的理论估计以及可用的实验测量进行了比较。还计算了 H7 (+) 和 D7 (+) 的基态振动和 10 K 态的概率密度分布。这些定性地描述为中心 H3 (+)/D3 (+) 核,周围是几乎自由旋转的“溶剂”H2/D2 分子。