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Calculation of the aqueous solvation energy and entropy, as well as free energy, of simple polar solutes

机译:计算简单极性溶质的水溶剂化能,熵和自由能

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With the advent of more powerful computers, the question of calculating thermodynamic quantities, such as the energy and the entropy, in solute-solvent systems is revisited. The calculation of these thermodynamic quantitites was limited in the past by their slow convergence relative to the free energy. Using molecular dynamics simulations, the energy, entropy, and free energy of solvation of NMA and CH3NH2, as well as their relative values, have been determined. Three different methods (the thermodynamic perturbation method, the thermodynamic integration method, and a finite-difference method) are compared. The finite difference method gives the best results and accurate values for the entropy and energy were obtained using a reasonable amount to computer time. The results suggest that a meaningful thermodynamic description of biomolecular processes can be realized with present methods and the available computer time. (C) 2004 American Institute of Physics.
机译:随着功能更强大的计算机的出现,对溶质溶剂系统中热力学量(例如能量和熵)的计算问题进行了研究。这些热力学量子的计算在过去受到相对于自由能的缓慢收敛的限制。使用分子动力学模拟,已经确定了NMA和CH3NH2的溶剂化能量,熵和自由能,以及它们的相对值。比较了三种不同的方法(热力学摄动法,热力学积分法和有限差分法)。有限差分法给出了最佳结果,并且使用合理的计算机时间获得了准确的熵和能量值。结果表明,利用现有方法和可用的计算机时间可以实现对生物分子过程的有意义的热力学描述。 (C)2004年美国物理研究所。

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