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Chemotaxis in a binary mixture of active and passive particles

机译:趋化性在活性和被动粒子的二元混合物中

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Mixtures of active and passive colloids show an intriguing dynamics of self-assembling, which is driven by the active component. Self-phoretic active colloids generate sinks in a chemical concentration field that cause passive colloids to drift toward active colloids by diffusiophoresis. The strength of this effective attraction is governed by the diffusiophoretic parameter, which determines the drift velocity. Simulating the Langevin dynamics of the colloids, we determine the state diagram for increasing diffusiophoretic strength and fixed active velocity. Three main states are distinguished. For weak attraction, passive particles are first scattered in the simulation box and then form a colloidal cloud around its center. Increasing the diffusiophoretic parameter further, passive particles oscillate between the cloud and a compact cluster, which embeds active colloids. Ultimately, in the third state, all particles collapse into a single stable cluster. In the collapse regime, the clustering dynamics of the largest cluster follows a logistic function and the mean cluster velocity vs cluster size decays with a power law. Throughout this article, we discuss our simulation results with regard to the experiments of Singh et al., Adv. Mater. 29(32), 1701328 (2017).
机译:主动和无源胶体的混合物显示出自组装的有趣动态,其由活性组分驱动。自定理活性胶体在化学浓度场中产生水槽,导致被动胶体通过扩散综合体向活性胶体漂移。这种有效吸引力的强度受到扩散的扩散参数的管辖,这决定了漂移速度。模拟胶体的Langevin动力学,确定增加扩散强度和固定主动速度的状态图。三个主要国家是区别的。对于弱吸引力,首先在仿真盒中散射被动颗粒,然后在其中心围绕胶体云。进一步增加扩散渗透参数,被动颗粒振荡云和紧凑簇之间,其嵌入活性胶体。最终,在第三状态,所有颗粒都崩溃成单个稳定的簇。在崩溃制度中,最大集群的聚类动态遵循逻辑函数,并且平均聚类速度与电力法衰减。在本文中,我们在Singh等人的实验方面讨论了我们的模拟结果。母娘。 29(32),1701328(2017)。

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