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首页> 外文期刊>The Journal of Chemical Physics >Potential distribution theorem for the polymer-induced depletion between colloidal particles
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Potential distribution theorem for the polymer-induced depletion between colloidal particles

机译:聚合物引起的胶体颗粒间耗竭的势分布定理

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摘要

The authors investigated the polymer-mediated colloidal interactions in a good solvent wherein the particle size varies from that much smaller than the polymer radius of gyration up to macroscopic and the polymer concentration varies from that corresponding to a dilute solution to that close to a melt.At conditions directly accessible to molecular simulations,the theoretical predictions agree favorably with the simulation results for the distributions of polymer segments and for the polymer-mediated colloidal interactions.The theoretical methods were then exploited to examine the polymer structure and colloidal interactions when the particle/polymer size ratio changes from the "protein" limit to the "colloid" limit at different regimes of the polymer concentration(i.e.,dilute,semidilute,and concentrated).The authors found that the surface curvature plays a significant role on the distribution of polymer segments near the particle surface at low polymer concentration,but this effect diminishes as the polymer concentration increases.The Derjaguin approximation works reasonably well at high polymer concentration even in the protein limit,but it may fail qualitatively at low polymer concentration where the polymer-induced colloidal force becomes long range.
机译:作者研究了在良好溶剂中聚合物介导的胶体相互作用,其粒径从远小于聚合物的回转半径变化到宏观,而聚合物的浓度则从对应于稀溶液的浓度变化到接近熔体的浓度。在分子模拟可直接获得的条件下,理论预测与模拟结果在聚合物链段的分布以及聚合物介导的胶体相互作用方面都非常吻合,然后利用理论方法研究了当颗粒/分子之间的聚合物结构和胶体相互作用。在聚合物浓度不同的情况下(即稀释,半稀释和浓缩),聚合物的尺寸比从“蛋白质”极限变为“胶体”极限。作者发现,表面曲率对聚合物的分布起着重要作用。低聚合物浓度下,颗粒表面附近的分子链段,但这种作用变暗了随着聚合物浓度的增加,Derjaguin近似在较高的聚合物浓度(即使在蛋白质极限范围内)也能很好地发挥作用,但在低聚合物浓度下(聚合物诱导的胶体力变大),它可能会定性地失效。

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