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具有结构化单体的晶格聚合物混合物。

Mixtures of lattice polymers with structured monomers.

作者信息

Buta Dorel, Freed Karl F

机构信息

Department of Physics and James Franck Institute, University of Chicago, Chicago, Illinois 60637, USA.

出版信息

J Chem Phys. 2004 Apr 1;120(13):6288-98. doi: 10.1063/1.1652432.

Abstract

The influence of monomer structure on the thermodynamic properties of lattice model polymer blends is investigated through Monte Carlo computations. The model of lattice polymers with monomer structure has been used extensively in the context of the lattice cluster theory (LCT), a thermodynamic theory for polymer mixtures in the liquid state. The Monte Carlo computations provide the first unequivocal test of the accuracy of the LCT predictions for binary mixtures of polymers with structured monomers. Four types of monomer structures are analyzed, corresponding to to the monomers of polyethylene, polypropylene, polyethylethylene, and polyisobutylene (PIB). Most computations use chains with M=12 and 24 beads and the total volume fraction of the beads is phi=0.6. Both structurally symmetric and asymmetric blends are investigated. For the symmetric case, the predictions of the LCT for the energies of mixing and the liquid-liquid coexistence curves are in qualitative agreement with the Monte Carlo computations, except for the PIB/PIB symmetric blend. For structurally asymmetric blends, the LCT does not capture contributions to the energy of mixing arising solely from structural differences between the components. Computational estimates of the nonideal entropy of mixing indicate that the LCT also underestimates the entropic cost of mixing chains with different structures, thus explaining some discrepancies between the theoretical and the Monte Carlo liquid--liquid coexistence curves.

摘要

通过蒙特卡罗计算研究了单体结构对晶格模型聚合物共混物热力学性质的影响。具有单体结构的晶格聚合物模型已在晶格簇理论(LCT)的背景下广泛使用,LCT是一种用于液态聚合物混合物的热力学理论。蒙特卡罗计算首次明确检验了LCT对具有结构化单体的聚合物二元混合物预测的准确性。分析了四种类型的单体结构,分别对应于聚乙烯、聚丙烯、聚亚乙基和聚异丁烯(PIB)的单体。大多数计算使用具有12和24个珠子的链,珠子的总体积分数为φ=0.6。研究了结构对称和不对称的共混物。对于对称情况,除了PIB/PIB对称共混物外,LCT对混合能和液-液共存曲线的预测与蒙特卡罗计算在定性上一致。对于结构不对称的共混物,LCT没有捕捉到仅由组分之间结构差异引起的混合能贡献。混合非理想熵的计算估计表明,LCT也低估了不同结构链混合的熵成本,并由此解释了理论和蒙特卡罗液-液共存曲线之间的一些差异。

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