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Shear-induced effects in hyperbranched-linear polyelectrolyte complexes

机译:剪切诱导的超支化线性聚电解质配合物的作用

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Static and dynamic properties of complexes formed by hyperbranched polymers with linear polyelectrolytes are studied under the influence of steady shear flow by means of Brownian dynamics simulations. Models of peripherally charged hyperbranched molecules bearing two extreme topological structures and different molecular weights complexed with linear neutralizing chains are subjected to a range of shear rates starting from a low-shear regime toward the complex-breaking point. Examination of the stability limit, shape and mass distribution parameters, and dynamics in different lengths and timescales is performed as a function of the applied shear. The results described illustrate features of the generic behavior that should be expected from such systems under conditions of steady shear flow. (c) 2008 American Institute of Physics.
机译:通过布朗动力学模拟研究了在稳定剪切流的影响下,超支化聚合物与线性聚电解质形成的配合物的静态和动态特性。带有两个极端拓扑结构且带有线性中和链的不同分子量的带有外围电荷的超支化分子的模型,其剪切速率范围从低剪切态到复杂断裂点。根据所施加的剪切力,对稳定性极限,形状和质量分布参数以及不同长度和时间范围内的动力学进行检查。所描述的结果说明了在稳定剪切流条件下,此类系统应具有的一般特性。 (c)2008年美国物理研究所。

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