Department of Chemistry and Physics, Arcadia University, Glenside, Pennsylvania 19038-3295, USA.
J Chem Phys. 2010 Dec 7;133(21):214301. doi: 10.1063/1.3506027.
Variational Monte Carlo, diffusion Monte Carlo, and stereographic projection path integral simulations are performed on eight selected species from the (NH(3))(n), (ND(3))(n), (NH(2)D)(n), and (NH(3))(n-1)(ND(3)) clusters. Each monomer is treated as a rigid body with the rotation spaces mapped by the stereographic projection coordinates. We compare the energy obtained from path integral simulations at several low temperatures with those obtained by diffusion Monte Carlo, for two dimers, and we find that at 4 K, the fully deuterated dimer energy is in excellent agreement with the ground state energy of the same. The ground state wavefunction for the (NH(3))(2-5) clusters is predominantly localized in the global minimum of the potential energy. In all simulations of mixed isotopic substitutions, we find that the heavier isotope is almost exclusively the participant in the hydrogen bond.
对(NH3)(n)、(ND3)(n)、(NH2D)(n)和(NH3)(n-1)(ND3)团簇中的 8 种选定物种进行了变分蒙特卡罗、扩散蒙特卡罗和立体投影路径积分模拟。每个单体都被视为刚体,其旋转空间由立体投影坐标映射。我们将路径积分模拟在几个低温下得到的能量与扩散蒙特卡罗得到的能量进行了比较,对于两个二聚体,我们发现,在 4 K 时,完全氘代二聚体的能量与相同的基态能量非常吻合。(NH3)(2-5)团簇的基态波函数主要定域在势能的全局最小值处。在所有混合同位素取代的模拟中,我们发现较重的同位素几乎完全是氢键的参与者。