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首页> 外文期刊>The Journal of Chemical Physics >Predicting the thermodynamics by using state-dependent interactions
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Predicting the thermodynamics by using state-dependent interactions

机译:通过使用状态相关的相互作用预测热力学

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摘要

We reconsider the structure-based route to coarse graining in which the coarse-grained model is defined in such a way to reproduce some distribution functions of the original system as accurately as possible. We consider standard expressions for pressure and chemical potential applied to this family of coarse-grained models with density-dependent interactions and show that they only provide approximations to the pressure and chemical potential of the underlying original system. These approximations are then carefully compared in two cases: we consider a generic microscopic system in the low-density regime and polymer solutions under good-solvent conditions. Moreover, we show that the state-dependent potentials depend on the ensemble in which they have been derived. Therefore, care must be used in applying canonical state-dependent potentials to predict phase lines, which is typically performed in other ensembles.
机译:我们重新考虑了到粗粒化的基于结构的路线,其中以这种方式定义了粗粒模型,以尽可能准确地重现原始系统的某些分布函数。我们考虑了应用于具有密度依赖相互作用的该粗粒度模型族的压力和化学势的标准表达式,并表明它们仅提供了基础原始系统的压力和化学势的近似值。然后在两种情况下仔细比较这些近似值:我们考虑了低密度条件下的通用微观系统和良好溶剂条件下的聚合物溶液。此外,我们表明,状态相关的电位取决于其所源自的整体。因此,在应用规范状态相关电位来预测相线时必须格外小心,这通常是在其他合奏中执行的。

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