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聚乙烯醇与聚甲基丙烯酸甲酯二元共混物相容性的分子模拟:原子模拟与热力学方法

Molecular modeling on the binary blend compatibility of poly(vinyl alcohol) and poly(methyl methacrylate): an atomistic simulation and thermodynamic approach.

作者信息

Jawalkar Sheetal S, Adoor Susheelkumar G, Sairam Malladi, Nadagouda Mallikarjuna N, Aminabhavi Tejraj M

机构信息

Molecular Modeling Division, Center of Excellence in Polymer Science, Karnatak University, Dharwad, India.

出版信息

J Phys Chem B. 2005 Aug 18;109(32):15611-20. doi: 10.1021/jp051206v.

Abstract

Computer simulations play an important role in designing new polymers as well as in predicting properties of existing polymers. In this paper, the blend compatibility of poly(vinyl alcohol) (PVA) with poly(methyl methacrylate) (PMMA) was studied over the wide range of compositions allowed by the atomistic and mesoscopic simulation methods. The Flory-Huggins interaction parameter, chi, of the blends computed using the atomistic simulation confirmed the blend compatibility for compositions containing >60 wt % of PVA. This observation was further supported by differential scanning calorimetric experiments. Solubility parameters of the polymers obtained from the simulation procedure were in good agreement with those of the literature data. Simulation results were further supported by the spectral and solution property measurements. From the atomistic simulations, chi versus concentration plots were constructed, which showed trends similar to those experimentally measured melting temperature versus concentration. The chi values for the blends, which satisfied the criteria of miscibility of two polymers by the atomistic simulation, agreed quite well with the solubility criteria related to order parameters calculated from the mesoscopic simulation. Kinetics of phase separation was examined via density profiles calculated using the MesoDyn approach for incompatible blends. The length and time scales spanned by these simulations were found to be relevant to the real application scales. The free energy computed in the mesoscopic simulation for blends reached equilibrium, particularly when the simulation was performed at a higher time step, indicating the stability of the blend system at certain compositions.

摘要

计算机模拟在设计新型聚合物以及预测现有聚合物的性能方面发挥着重要作用。在本文中,通过原子模拟和介观模拟方法,在广泛的组成范围内研究了聚乙烯醇(PVA)与聚甲基丙烯酸甲酯(PMMA)的共混相容性。使用原子模拟计算的共混物的弗洛里 - 哈金斯相互作用参数χ证实了含>60 wt% PVA的组成的共混相容性。差示扫描量热实验进一步支持了这一观察结果。从模拟过程获得的聚合物的溶解度参数与文献数据吻合良好。光谱和溶液性质测量进一步支持了模拟结果。通过原子模拟构建了χ与浓度的关系图,其显示出与实验测量的熔点与浓度关系相似的趋势。通过原子模拟满足两种聚合物互溶标准的共混物的χ值与从介观模拟计算的与序参量相关的溶解度标准相当吻合。通过使用MesoDyn方法计算不相容共混物的密度分布来研究相分离动力学。发现这些模拟跨越的长度和时间尺度与实际应用尺度相关。介观模拟中计算的共混物的自由能达到平衡,特别是当模拟在较高时间步长下进行时,表明共混体系在某些组成下的稳定性。

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