Institute for Theoretical Chemistry, University of Vienna, Währinger Strasse 17, 1090 Vienna, Austria.
J Comput Chem. 2010 Jul 30;31(10):2046-55. doi: 10.1002/jcc.21491.
The thermodynamic properties of a selected set of benchmark hydrogen-bonded systems (acetic acid dimer and the complexes of acetic acid with acetamide and methanol) was studied with the goal of obtaining detailed information on solvent effects on the hydrogen-bonded interactions using water, chloroform, and n-heptane as representatives for a wide range in the dielectric constant. Solvent effects were investigated using both explicit and implicit solvation models. For the explicit description of the solvent, molecular dynamics and Monte Carlo simulations in the isothermal-isobaric (NpT) ensemble combined with the free energy perturbation technique were performed to determine solvation free energies. Within the implicit solvation approach, the polarizable continuum model and the conductor-like screening model were applied. Combination of gas phase results with the results obtained from the different solvation models through an appropriate thermodynamic cycle allows estimation of complexation free energies, enthalpies, and the respective entropic contributions in solution. Owing to the strong solvation effects of water the cyclic acetic acid dimer is not stable in aqueous solution. In less polar solvents the double hydrogen bond structure of the acetic acid dimer remains stable. This finding is in agreement with previous theoretical and experimental results. A similar trend as for the acetic acid dimer is also observed for the acetamide complex. The methanol complex was found to be thermodynamically unstable in gas phase as well as in any of the three solvents.
用选定的一组基准氢键体系(乙酸二聚体和乙酸与乙酰胺和甲醇的配合物)的热力学性质进行研究,目的是获得关于溶剂对氢键相互作用影响的详细信息,使用水、氯仿和正庚烷作为介电常数范围广泛的代表。使用显式和隐式溶剂化模型研究了溶剂效应。对于溶剂的显式描述,在等压(NpT)系综中进行了分子动力学和蒙特卡罗模拟,并结合自由能微扰技术来确定溶剂化自由能。在隐式溶剂化方法中,应用了极化连续体模型和导体相似屏蔽模型。通过适当的热力学循环将气相结果与不同溶剂化模型的结果相结合,可估算配合物在溶液中的自由能、焓和相应的熵贡献。由于水的强溶剂化效应,环状乙酸二聚体在水溶液中不稳定。在极性较小的溶剂中,乙酸二聚体的双氢键结构仍然稳定。这一发现与以前的理论和实验结果一致。对于乙酰胺配合物,也观察到了与乙酸二聚体相似的趋势。甲醇配合物在气相以及三种溶剂中的任何一种中都被发现热力学不稳定。