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首页> 外文期刊>The Journal of Chemical Physics >Molecular simulation of caloric properties of fluids modelled by force fields with intramolecular contributions: Application to heat capacities
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Molecular simulation of caloric properties of fluids modelled by force fields with intramolecular contributions: Application to heat capacities

机译:分子内贡献强制田地模型流体热性能的分子模拟:对热能的应用

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摘要

The calculation of caloric properties such as heat capacity, Joule-Thomson coefficients, and the speed of sound by classical force-field-based molecular simulation methodology has received scant attention in the literature, particularly for systems composed of complex molecules whose force fields (FFs) are characterized by a combination of intramolecular and intermolecular terms. The calculation of a thermodynamic property for a system whose molecules are described by such a FF involves the calculation of the residual property prior to its addition to the corresponding ideal-gas property, the latter of which is separately calculated, either using thermochemical compilations or nowadays accurate quantum mechanical calculations. Although the simulation of a volumetric residual property proceeds by simply replacing the intermolecular FF in the rigid molecule case by the total (intramolecular plus intermolecular) FF, this is not the case for a caloric property. We describe the correct methodology required to perform such calculations and illustrate it in this paper for the case of the internal energy and the enthalpy and their corresponding molar heat capacities. We provide numerical results for c(P), one of the most important caloric properties. We also consider approximations to the correct calculation procedure previously used in the literature and illustrate their consequences for the examples of the relatively simple molecule 2-propanol, CH3CH(OH)CH3, and for the more complex molecule monoethanolamine, HO(CH2)(2)NH2, an important fluid used in carbon capture. Published by AIP Publishing.
机译:热容量,焦耳 - 汤姆森系数和经典力场的分子模拟方法等热量,焦耳峰系数和声音速度的计算在文献中受到了很少的关注,特别是对于由力场(FFS的复杂分子组成的系统组成的系统)以分子内和分子间术语的组合为特征。通过这种FF描述的系统的系统的热力学性质涉及在其添加到相应的理想气体性能之前计算残留性能,其后者使用热化学编译或如今分别计算精确量子机械计算。尽管通过总共(分细分分子和分子间)FF的刚性分子壳体中的分子间FF进行了体积残余物质的模拟,但是对于热量特性,不是这种情况。我们描述了执行这种计算所需的正确方法,并在本文中示出了内部能量和焓及其相应的摩尔热容量。我们为C(P)提供数值结果,是最重要的热量特性之一。我们还考虑以前在文献中使用的正确计算程序的近似,并说明它们对相对简单的分子2-丙醇,CH3CH(OH)CH 3的实例的后果,以及更复杂的单乙醇胺,HO(CH2)(2 )NH2,是碳捕获中使用的重要液体。通过AIP发布发布。

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