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Influence of hair density and hair length on interparticle interactions of spherical polymer brushes in a homopolymer matrix

机译:头发密度和头发长度对均聚物基质中球形聚合物刷的颗粒间相互作用的影响

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The dynamics of hairy spherical nanoparticles in a melt of linear polymer chains has been investigated by mechanical spectroscopy as a function of particle topology and concentration. Using a simple free volume approach for the data analysis of the structural relaxation time vs concentration and the well-known hard-sphere result as a reference, a semiquantitative measure for the interparticle interactions, that is particle deformability/softness, and the effective particle size compared to the size of a nonswollen spherical brush has been determined. For these studies, model particles of hairy nanoparticles differing in either hair length or grafting density have been prepared. In contrast to our previous studies of copolymer micelles, for the new graft particles at very high grafting densities our free volume approach led to nonphysical results: the effective particle size is increasing with increasing concentration. Therefore, it has been concluded that densely grafted hairy particles in a matrix of linear polymer chains cannot be mapped onto a hard-sphere reference system, indicating that the interaction potential is not simply soft repulsive. [References: 35]
机译:通过机械光谱研究了线性聚合物链熔体中毛状球形纳米颗粒的动力学,该动力学是颗粒拓扑和浓度的函数。使用简单的自由体积方法对结构弛豫时间与浓度的关系进行数据分析,并以众所周知的硬球结果作为参考,对颗粒间相互作用进行半定量测量,即颗粒可变形性/柔软性以及有效颗粒尺寸与不溶胀的球形刷子的尺寸相比,已经确定。对于这些研究,已经制备了在头发长度或接枝密度上不同的毛状纳米颗粒的模型颗粒。与我们以前对共聚物胶束的研究相反,对于接枝密度非常高的新型接枝颗粒,我们的自由体积方法导致了非物理结果:有效粒径随着浓度的增加而增加。因此,得出的结论是,线性聚合物链基质中的紧密接枝的毛状颗粒无法映射到硬球参考系统上,这表明相互作用的潜力不只是软排斥。 [参考:35]

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