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首页> 外文期刊>Macromolecules >INFLUENCE OF THE HYDROPHOBE STRUCTURE ON COMPOSITION, MICROSTRUCTURE, AND RHEOLOGY IN ASSOCIATING POLYACRYLAMIDES PREPARED BY MICELLAR COPOLYMERIZATION
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INFLUENCE OF THE HYDROPHOBE STRUCTURE ON COMPOSITION, MICROSTRUCTURE, AND RHEOLOGY IN ASSOCIATING POLYACRYLAMIDES PREPARED BY MICELLAR COPOLYMERIZATION

机译:疏水结构对胶束共聚合制备的聚丙烯酰胺的组成,微观结构和流变学的影响

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摘要

Acrylamide polymers modified with low amounts of alkyl- or alkylarylacrylamides (1-5 mol %) have been prepared by an aqueous micellar copolymerization technique. This method is known to lead to multiblock copolymers in which the number and length of the hydrophobic blocks vary with the initial number of hydrophobes per micelle. The incorporation behavior of different types of hydrophobes and their effects on the rheological copolymer properties have been investigated. Interestingly, the use of disubstituted acrylamides leads to an average copolymer composition independent of the degree of conversion, in contrast to what is observed with monosubstituted acrylamides. Solubility measurements of both types of hydrophobes indicate that the micellar dynamics is not responsible for this behavior, but rather the difference in polarity between the bulk phase and the micellar phase. This microenvironment effect modifies the reactivity ratios of those hydrophobes capable of forming hydrogen bonds, whereas the reactivity of the other hydrophobes remains unaffected. The rheological properties of the samples are discussed in terms of copolymer microstructure and type of hydrophobe used (bulkiness, degree of branching, and alkyl chain length). For example, at similar hydrophobe levels, double-chain hydrophobes considerably enhance the thickening efficiency with respect to single-chain hydrophobes. [References: 56]
机译:通过含水胶束共聚技术已经制备了用少量的烷基或烷基芳基丙烯酰胺(1-5mol%)改性的丙烯酰胺聚合物。已知该方法导致多嵌段共聚物,其中疏水性嵌段的数目和长度随每个胶束的疏水物的初始数目而变化。研究了不同类型疏水物的掺入行为及其对流变共聚物性能的影响。有趣的是,与单取代的丙烯酰胺所观察到的相反,双取代的丙烯酰胺的使用产生了与转化率无关的平均共聚物组成。两种类型疏水物的溶解度测量结果表明,胶束动力学不是这种行为的原因,而是本体相和胶束相之间极性的差异。这种微环境效应改变了那些能够形成氢键的疏水物的反应性比率,而其他疏水物的反应性保持不变。根据共聚物的微观结构和所用疏水物的类型(松散度,支化度和烷基链长)讨论了样品的流变性质。例如,在相似的疏水物水平下,双链疏水物相对于单链疏水物显着提高了增稠效率。 [参考:56]

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