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Microstructure of inhomogeneous polyatomic mixtures from a density functional formalism for atomic mixtures

机译:密度泛函形式对原子混合物的不均匀多原子混合物的微观结构

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A free energy density functional theory (DFT) for inhomogeneous polymeric mixtures is developed by treating the polyatomic system as a strongly associating atomic fluid mixture. The theory, derived in terms of segment density, retains the simple form of the DFTs for atomic fluids. Invoking the complete bonding limit of a stoichiometric mixture in the association free energy functional yields a computationally simple and accurate functional for the polyatomic system. Comparisons of theory calculations with molecular simulations are presented for inhomogeneous solutions and blends of linear and branched chains, demonstrating the capability of the theory to accurately capture the entropic and enthalpic effects governing the microstructure. (C) 2005 American Institute of Physics.
机译:通过将多原子系统视为强缔合的原子流体混合物,开发了用于非均质聚合物混合物的自由能密度泛函理论(DFT)。从链段密度的角度出发,该理论保留了原子流体DFT的简单形式。在缔合自由能官能团中调用化学计量混合物的完全键合极限将为多原子系统提供计算上简单且准确的官能团。提出了理论计算与分子模拟的比较,用于线性和支链的不均匀溶液和共混物,证明了该理论能够准确捕获控制微观结构的熵和焓效应的能力。 (C)2005美国物理研究所。

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