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首页> 外文期刊>The Journal of Chemical Physics >The drag of the tails: Diffusion of sticky nanoparticles in dilute polymer solutions
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The drag of the tails: Diffusion of sticky nanoparticles in dilute polymer solutions

机译:尾巴的阻力:粘性纳米颗粒在稀聚合物溶液中的扩散

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摘要

We devise a simple coarse-grained model of a nanoparticle exhibiting attractive interactions with a polymer in good solvent and use Monte Carlo simulations to study how adsorption of the polymer affects the hydrodynamic properties of the nanoparticle. We show that the hydrodynamic radius of the polymer-decorated nanoparticle increases with increasing polymer chain length or concentration. The slowdown of diffusion of the sticky nanoparticles is predicted to occur at polymer concentrations many orders of magnitude below the overlap concentration, in contrast with the case of non-sticky nanoparticles. To rationalize our findings, we employ the concept of trains, loops, and tails, which has been used in earlier theoretical studies of polymer adsorption at interfaces. We show that dominant contribution to the increase of the hydrodynamic radius of the polymer-decorated nanoparticles comes from the tails, which stretch far from the surface. On the contrary, the much more numerous but shorter loops and tails play only a minor role. (C) 2015 AIP Publishing LLC.
机译:我们设计了一个简单的粗粒化纳米颗粒模型,该模型在良好的溶剂中与聚合物表现出有吸引力的相互作用,并使用蒙特卡洛模拟来研究聚合物的吸附如何影响纳米颗粒的流体动力学特性。我们表明,聚合物修饰的纳米颗粒的流体力学半径随聚合物链长或浓度的增加而增加。与非粘性纳米颗粒的情况相反,预计粘性纳米颗粒的扩散减慢发生在低于重叠浓度许多数量级的聚合物浓度下。为了合理化我们的发现,我们采用了链,环和尾的概念,该概念已在较早的界面聚合物吸附理论研究中使用。我们表明,聚合物装饰的纳米颗粒的流体动力学半径增加的主要贡献来自于尾巴,尾巴远离表面。相反,数量众多但较短的环和尾巴仅起次要作用。 (C)2015 AIP Publishing LLC。

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