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APS -APS March Meeting 2017 - Event - The effect of polymer architecture on the interdiffusion in thin polymer films.

机译:APS -APS 2017年3月会议-活动-聚合物结构对薄聚合物薄膜相互扩散的影响。

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Branched polymer chains have been traditionally used in industrial applications as additives. Recently they have found applications in electrochromic displays, lithography, biomedical coatings and targeting multidrug resistant bacteria. In some of these applications where they are confined in thin layers, it is important to understand the relation between the mobility and polymer chain architecture to optimize the processing conditions. Earlier interdiffusion measurements on linear and cyclic polymer chains demonstrated the key role of chain architecture on mobility. We have determined the vertical diffusion coefficients of the star polystyrene chains in thin films as a function of number of polymer arms, molecular weight per arm, and film thickness using neutron reflectivity (NR) and compare our results with linear chains of identical total molecular weight. Bilayer samples of 4-arm and 8-arm protonated polystyrenes (hPS) and deuterated polystyrenes (dPS) were used to elucidate the effect of polymer chain architecture on polymer diffusion. NR measurements indicate that the mobility of polymer chains in thin films get faster as the number of polymer arms increases and the arm molecular weight decreases. Both star polymers showed faster interdiffusion compared to their linear analog. Diffusion coefficient of branched PS chains has a weak dependence on the film thickness.
机译:支链聚合物链传统上已在工业应用中用作添加剂。最近,他们发现了在电致变色显示器,光刻,生物医学涂层和靶向多药耐药细菌中的应用。在某些将它们限制在薄层中的应用中,重要的是要了解迁移率和聚合物链结构之间的关系以优化加工条件。较早的对线性和环状聚合物链的相互扩散测量表明链结构对流动性的关键作用。我们使用中子反射率(NR)确定了薄膜中星形聚苯乙烯链的垂直扩散系数与聚合物臂数,每臂分子量和膜厚度的函数关系,并将我们的结果与总分子量相同的线性链进行了比较。使用4臂和8臂质子化聚苯乙烯(hPS)和氘代聚苯乙烯(dPS)的双层样品来阐明聚合物链结构对聚合物扩散的影响。 NR测量表明,随着聚合物臂数的增加和臂分子量的降低,薄膜中聚合物链的迁移率变得更快。与线性类似物相比,两种星形聚合物均显示出更快的相互扩散。支链PS链的扩散系数对薄膜厚度的依赖性较弱。

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