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Reduction of polymer surface tension by crystallized polymer nanoparticles

机译:结晶的聚合物纳米颗粒降低聚合物表面张力

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Self-consistent field theory is applied to investigate the effects of crystallized polymer nanoparticles on polymer surface tension. It is predicted that the nanoparticles locate preferentially at the polymer surface and significantly reduce the surface tension, in agreement with experiment. In addition to the reduction of surface tension, the width of the polymer surface is found to narrow. The reduced width and surface tension are due to the smaller spatial extent of the nanoparticles compared to the polymer. This allows the interface to become less diffuse and so reduces the energies of interaction at the surface, which lowers the surface tension. The solubility of the surrounding solvent phase into the polymer melt is mostly unchanged, a very slight decrease being detectable. The solubility is constant because away from the interface, the system is homogeneous and the replacement of polymer with nanoparticles has little effect.
机译:应用自洽场理论研究结晶的聚合物纳米颗粒对聚合物表面张力的影响。预计与实验一致,纳米颗粒优先位于聚合物表面并显着降低表面张力。除了降低表面张力之外,发现聚合物表面的宽度变窄。减小的宽度和表面张力是由于与聚合物相比,纳米颗粒的空间范围较小。这允许界面变得较少扩散,因此减少了表面处的相互作用能,从而降低了表面张力。周围溶剂相在聚合物熔体中的溶解度基本不变,可以检测到非常小的降低。溶解度是恒定的,因为远离界面,系统是均质的,用纳米粒子代替聚合物几乎没有影响。

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