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A perturbation theory for solvation thermodynamics: Dipolar-quadrupolar liquids

机译:溶剂化热力学的扰动理论:偶极-四极液体

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The thermodynamics of solvation of a dipole in hard sphere solvents with dipoles and quadrupoles is studied by using the Pade approximation for the perturbation expansion of the solvation chemical potential and compared to Monte Carlo simulations. Solvation chemical potentials, energies, and entropies of solvation are obtained at different dipolar and quadrupolar solvent strengths. The effect of nonlinear solvation is analyzed and found not to exceed 10% in the parameter range studied. An agreement between the simulations and the analytical theory is obtained by an empirical rescaling of the triple perturbation integrals of the perturbation expansion. This rescaling does not, however, provide a quantitatively correct partitioning of the solvation free energy into the energy and entropy of solvation.
机译:通过使用Pade近似研究溶剂化化学势的扰动扩展,研究了偶极在具有偶极和四极的硬球溶剂中的偶合溶剂的热力学,并将其与蒙特卡洛模拟进行了比较。在不同的偶极和四极溶剂强度下可获得溶剂化的化学势,能量和​​溶剂化熵。分析了非线性溶剂化的影响,发现在所研究的参数范围内不超过10%。通过对扰动展开的三重扰动积分进行经验重定比例,可以得出仿真与分析理论之间的一致性。然而,这种重新缩放不能提供溶剂化自由能在定量上正确的划分为溶剂化的能量和熵。

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