School of Physics, Room 302 UCD-EMSC, University College Dublin , Belfield, Dublin 4, Dublin, Ireland.
J Phys Chem A. 2013 Dec 12;117(49):13039-50. doi: 10.1021/jp406982h. Epub 2013 Dec 2.
We perform restrained hybrid Monte Carlo (MC) simulations to compute the equilibrium constant of the dissociation reaction of HF in HF(H2O)7. We find that the HF is a stronger acid in the cluster than in the bulk, and its acidity is higher at lower T. The latter phenomenon has a vibrational entropic origin, resulting from a counterintuitive balance of intra- and intermolecular terms. We find also a temperature dependence of the reactions mechanism. At low T (≤225 K) the dissociation reaction follows a concerted path, with the H atoms belonging to the relevant hydrogen bond chain moving synchronously. At higher T (300 K), the first two hydrogen atoms move together, forming an intermediate metastable state having the structure of an eigen ion (H9O4(+)), and then the third hydrogen migrates completing the reaction. We also compute the dissociation rate constant, kRP. At very low T (≤75 K) kRP depends strongly on the temperature, whereas it gets almost constant at higher T’s. With respect to the bulk, the HF dissociation in the HF(H2O)7 is about 1 order of magnitude faster. This is due to a lower free energy barrier for the dissociation in the cluster.
我们进行了受约束的杂化蒙特卡罗(MC)模拟,以计算 HF 在 HF(H2O)7 中离解反应的平衡常数。我们发现 HF 在团簇中的酸性比在体相中的酸性更强,而且在较低的 T 时其酸性更高。后一种现象具有振动熵起源,源自分子内和分子间项的反直觉平衡。我们还发现反应机制随温度而变化。在低温(≤225 K)下,离解反应遵循协同路径,相关氢键链上的 H 原子同步移动。在较高的 T(300 K)下,前两个氢原子一起移动,形成具有本征离子(H9O4(+))结构的亚稳态中间体,然后第三个氢迁移完成反应。我们还计算了离解速率常数 kRP。在非常低的 T(≤75 K)下,kRP 强烈依赖于温度,而在较高的 T 下几乎保持常数。与体相相比,HF 在 HF(H2O)7 中的离解速度快约 1 个数量级。这是由于团簇中离解的自由能势垒较低。