Faculty of Science, Department of Chemistry, King Mongkut's University of Technology, Thonburi, Bangkok 10140, Thailand.
J Comput Chem. 2010 Jun;31(8):1785-92. doi: 10.1002/jcc.21469.
An ab initio quantum mechanical charge field (QMCF) molecular dynamics simulation has been performed to study the structural and dynamical properties of a dilute aqueous HCl solution. The solute molecule HCl and its surrounding water molecules were treated at Hartree-Fock level in conjunction with Dunning double-zeta plus polarization function basis sets. The simulation predicts an average H-Cl bond distance of 1.28 A, which is in good agreement with the experimental value. The H(HCl)...O(w) and Cl(HCl)...H(w) distances of 1.84 and 3.51 A were found for the first hydration shell. At the hydrogen site of HCl, a single water molecule is the most preferred coordination, whereas an average coordination number of 12 water molecules of the full first shell was observed for the chloride site. The hydrogen bonding at the hydrogen site of HCl is weakened by proton transfer reactions and an associated lability of ligand binding. Two proton transfer processes were observed in the QMCF MD simulation, demonstrating acid dissociation of HCl. A weak structure-making/breaking effect of HCl in water is recognized from the mean residence times of 2.1 and 0.8 ps for ligands in the neighborhood of Cl and H sites of HCl, respectively.
采用从头算量子力学电荷场(QMCF)分子动力学模拟方法研究了稀盐酸水溶液的结构和动力学性质。在 HF 水平上结合 Dunning 双ζ加极化函数基组对溶质分子 HCl 及其周围水分子进行了处理。模拟预测的平均 H-Cl 键距离为 1.28 A,与实验值吻合较好。首次水合壳中发现 H(HCl)...O(w)和 Cl(HCl)...H(w)的距离分别为 1.84 和 3.51 A。在 HCl 的氢原子位置,单个水分子是最优先的配位,而对于氯原子位置,平均配位水分子数为 12 个。HCl 氢原子位置的氢键由于质子转移反应而减弱,配体结合的不稳定性也增强。在 QMCF MD 模拟中观察到两个质子转移过程,证明了 HCl 的酸离解。HCl 在水中的弱结构形成/破坏效应可以从 Cl 和 H 位点附近配体的平均停留时间分别为 2.1 和 0.8 ps 中看出。