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Coarse-grained depletion potentials for anisotropic colloids: Application to lock-and-key systems

机译:各向异性胶体的粗粒耗尽电位:应用于锁定和关键系统的应用

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摘要

When colloids are mixed with a depletant such as a non-adsorbing polymer, one observes attractive effective interactions between the colloidal particles. If these particles are anisotropic, analysis of these effective interactions is challenging in general. We present a method for inference of approximate (coarse-grained) effective interaction potentials between such anisotropic particles. Using the example of indented (lock-and-key) colloids, we show how numerical solutions can be used to integrate out the (hard sphere) depletant, leading to a depletion potential that accurately characterises the effective interactions. The accuracy of the method is based on matching of contributions to the second virial coefficient of the colloids. The simplest version of our method yields a piecewise-constant effective potential; we also show how this scheme can be generalised to other functional forms, where appropriate. Published by AIP Publishing.
机译:当胶体与诸如非吸附聚合物的脱落剂混合时,一个人观察到胶体颗粒之间的有效的有效相互作用。 如果这些颗粒是各向异性的,则对这些有效相互作用的分析一般具有挑战性。 我们介绍了这种各向异性颗粒之间的近似(粗粒)有效相互作用电位的方法。 使用缩进(锁和键)胶体的示例,我们示出了数值解决方案如何用于整合(硬球)脱落,导致精确表征有效相互作用的耗尽电位。 该方法的准确性是基于贡献对胶体的第二种病毒系数的匹配。 我们的方法的最简单版本产生了分段恒定的有效潜力; 我们还展示了该方案如何在适当的情况下向其他功能形式推广。 通过AIP发布发布。

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