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首页> 外文期刊>Macromolecules >Role of architecture on the conformation, rheology, and orientation behavior of linear, star, and hyperbranched polymer melts. 1. Synthesis and molecular characterization
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Role of architecture on the conformation, rheology, and orientation behavior of linear, star, and hyperbranched polymer melts. 1. Synthesis and molecular characterization

机译:体系结构对线性,星形和超支化聚合物熔体的构象,流变学和取向行为的作用。 1.合成与分子表征

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Polymer architecture plays an important role in the solution, rheological, mechanical and processing behavior. In this series of two papers, we explore the role of branching, especially branch density, on the conformation and rheology of homopolymers. A series of model star-core hyperbranched polystyrenes (HBPS) with branch functionality, f, ranging from approximately 15 to 55, and branch molecular weight M-br of 5, 10, 20, and 50 kg/mol are synthesized and characterized via triple detection SEC3 for the molecular weight, polydispersity, intrinsic viscosity, and radius of gyration. Compared to linear polymers and symmetric stars with three and eight arms of the same total molecular weight, these polymers exhibit considerably lower radius of gyration, Mark-Houwink exponent, and intrinsic viscosity. The hydrodynamic radii of HBPS with the highest branch density (f approximate to 50) are only about half the corresponding values of linear polymers of the same molecular weight, whereas this ratio is equal to 0.8 for symmetric stars. Our measurements suggest that HBPS have a very compact shape, high segmental density, and a starlike architecture. HBPS with branches shorter than the characteristic critical molecular weight exhibit a linear dependence of zero-shear viscosity on molecular weight, suggesting a lack of entanglements, and further indicating the starlike nature of the HBPS. Study of the rheology and flow birefringence of model polystyrenes will be presented in the following publication in this journal. [References: 68]
机译:聚合物结构在溶液,流变,机械和加工性能方面起着重要作用。在这两篇论文的系列文章中,我们探讨了支化作用,尤其是支链密度对均聚物构象和流变性的作用。合成了一系列支链官能度f在约15至55之间,支链分子量M-br为5、10、20和50 kg / mol的模型星形核超支化聚苯乙烯(HBPS),并通过三重表征检测SEC3的分子量,多分散性,特性粘度和回转半径。与线性聚合物和具有相同总分子量的三臂和八臂的对称星相比,这些聚合物的回转半径,Mark-Houwink指数和特性粘度均低得多。具有最高分支密度(f约为50)的HBPS的流体力学半径仅为相同分子量的线性聚合物相应值的一半左右,而对于对称恒星,该比率等于0.8。我们的测量结果表明,HBPS具有非常紧凑的形状,高的段密度和星形结构。支链短于特征临界分子量的HBPS表现出零剪切粘度对分子量的线性依赖性,表明没有缠结,并进一步表明了HBPS的星形性质。模型聚苯乙烯的流变学和流动双折射的研究将在本刊的以下出版物中介绍。 [参考:68]

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