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首页> 外文期刊>The Journal of Chemical Physics >LATTICE THEORY OF SOLVATION IN MACROMOLECULAR FLUIDS .3. MONTE CARLO SIMULATIONS
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LATTICE THEORY OF SOLVATION IN MACROMOLECULAR FLUIDS .3. MONTE CARLO SIMULATIONS

机译:大分子流体中的晶格固溶理论.3。蒙特卡洛模拟

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Monte Carlo simulations are used to calculate the energy, free energy, and entropy of solvation in a lattice model of polymer host. The solute particle interacts with specific beads in the host chain at nearest neighbor sites. The results are used to check the accuracy of the quasichemical approximation (QCA) recently used [Olender and Nitzan, J. Chem. Phys. 101, 2338 (1994)] to study ion solvation and ion pair dissociation in polymer hosts. For noninteracting chains we find that the QCA is very accurate when the solvent consists of homogeneous chains (all beads interact equally with the impurity), and give errors of up to 20% when nonhomogeneous chains (with some of the beads interacting with the impurity) are used, For interacting chains this trend is reversed and the QCA works better for nonhomogeneous chains. Deviations of the QCA prediction from the ''exact'' numerical results are traced to three-body and higher order correlations. The success of the QCA for interacting solvents of nonhomogeneous chains is associated with cancellation of opposing effects of such correlations. (C) 1995 American Institute of Physics. [References: 12]
机译:蒙特卡洛模拟用于计算聚合物主体晶格模型中的能量,自由能和溶剂化熵。溶质颗粒在最邻近的位置与宿主链中的特定珠相互作用。该结果用于检查最近使用的准化学近似(QCA)的准确性[Olender and Nitzan,J. Chem。物理101,2338(1994)]研究聚合物主体中的离子溶剂化和离子对解离。对于非相互作用链,我们发现当溶剂由均相链组成时(所有珠粒均与杂质相互作用),QCA非常准确;当非均质链(某些珠粒与杂质相互作用)时,QCA的误差高达20%。对于相互作用的链,这种趋势可以逆转,并且QCA对于非均质链的效果更好。 QCA预测与“精确”数值结果的偏差可追溯到三体和更高阶的相关性。 QCA对于非均相链溶剂相互作用的成功与消除这种相关性的相反作用有关。 (C)1995年美国物理研究所。 [参考:12]

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