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Entropy and enthalpy calculations from perturbation and integration thermodynamics methods using molecular dynamics simulations: applications to the calculation of hydration and association thermodynamic properties

机译:使用分子动力学模拟从扰动和积分热力学方法计算熵和焓:在水化和缔合热力学性质计算中的应用

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摘要

Calculation of association thermodynamic properties using molecular simulation is essential in computational chemistry. In the case of good agreement with the experimental thermodynamic binding properties, this type of calculation may complement experimental works by providing a microscopic view of the association process. Whereas the calculation of the free energy of association is nowadays well controlled, the calculation of the enthalpy and entropy of association remains difficult in most cases, especially as the association involves hosts and guests of biological interest. A novel method for calculating the entropy change from a molecular dynamics simulation is described. Within the theoretical framework, we discuss the different approximations leading to the final stage of the operational expressions of Delta G and Delta H in the NpT ensemble and we establish an expression for Delta S using the Free Energy Perturbation (FEP) formalism in this statistical ensemble. Finally, we illustrate the theoretical considerations by calculations of the hydration entropy changes between cations of different masses and charges. We extend the study by calculating the changes in the thermodynamic properties of association of inorganic cations with a macrocycle of biological interest.
机译:在计算化学中,使用分子模拟计算缔合热力学性质至关重要。在与实验热力学键合特性良好吻合的情况下,此类计算可以通过提供关联过程的微观视图来补充实验工作。尽管如今交联自由能的计算已得到很好的控制,但是在大多数情况下,尤其是由于缔合涉及具有生物学兴趣的宿主和来宾时,缔合的焓和熵的计算仍然很困难。描述了一种从分子动力学模拟计算熵变的新方法。在理论框架内,我们讨论导致NpT集合中Delta G和Delta H运算表达式最后阶段的不同近似值,并在此统计集合中使用自由能扰动(FEP)形式主义为Delta S建立表达式。 。最后,我们通过计算不同质量和电荷的阳离子之间的水合熵变来说明理论考虑。我们通过计算无机阳离子与生物大环缔合的热力学性质的变化来扩展研究。

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