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首页> 外文期刊>e-Polymers >Solvent-dependent rheological behavior of concentrated solutions of a cationic acrylic terpolymer containing self-assembled chains Farzad NLahooti-FardDIran Polymer and Petrochemical Institute, Department of Novel Drug Delivery Systems, P.O. Box 14965/115, Tehran, Iran
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Solvent-dependent rheological behavior of concentrated solutions of a cationic acrylic terpolymer containing self-assembled chains Farzad NLahooti-FardDIran Polymer and Petrochemical Institute, Department of Novel Drug Delivery Systems, P.O. Box 14965/115, Tehran, Iran

机译:含有自组装链Farzad N Lahooti-FardD Iran聚合物和石油化学研究所的阳离子丙烯酸三元共聚物浓缩溶液的溶剂流变行为,P.O。 Box 14965/115,伊朗德黑兰

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摘要

It has been proved that alcohol molecules exist as cyclic and chain aggregates of different sizes in pure or mixed solvent systems. Here, it will be shown that these aggregates can radically change the rheological properties of a concentrated polymer solution containing self-assembled chains. In a previous study by the same authors, the existence of self-assembled structures in dilute solution of poly(dirnethylaminoethyl methacrylate-co-methyl meth-acrylate-co-butyl methacrylate) in an alcoholic solvent mixture was shown according to small angle X-ray scattering results, showing that these structure were much more compact than those in acetone. This finding is based on the role of alcohol aggregates as physical cross-linkers. Here, the existence of self-assembled structures in concentrated solutions of the same terpolymer was confirmed by atomic force microscopy and rheology results both in acetone (a good solvent) and in a solvent mixture composed of acetone, ethanol and 1-propanol. For the terpolymer solutions in the solvent mixture, very little decrease in complex viscosity and shear thickening were observed at high strains and frequencies, respectively. It can be concluded that the alcohol aggregates can cause the formation of strong self-assembled structures that can even resist high shear forces or strains.
机译:已经证明,在纯溶剂或混合溶剂系统中,醇分子以不同大小的环状和链状聚集体形式存在。在这里,将表明这些聚集体可以从根本上改变含有自组装链的浓缩聚合物溶液的流变性质。在同一作者的先前研究中,根据小角度X-,显示了聚(甲基丙烯酸丁乙乙酯基乙基-乙基甲基乙基酯-甲基丙烯酸甲酯-甲基丙烯酸-甲基丙烯酸丁酯)的稀溶液中自组装结构的存在。射线散射结果表明,这些结构比丙酮中的结构紧凑得多。该发现基于醇聚集体作为物理交联剂的作用。在此,通过原子力显微镜证实了相同三元共聚物的浓溶液中自组装结构的存在,并且流变学结果表明丙酮(一种良溶剂)和丙酮,乙醇和1-丙醇组成的溶剂混合物中都发生了流变。对于溶剂混合物中的三元共聚物溶液,分别在高应变和高频率下观察到的复数粘度和剪切增稠几乎没有降低。可以得出结论,醇聚集体会导致形成坚固的自组装结构,甚至可以抵抗高剪切力或应变。

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