论文标题

密集的软胶体悬浮液中的示踪动力学:从自由扩散到跳跃

Tracer dynamics in dense soft-colloidal suspensions: From free diffusion to hopping

论文作者

Samukcham, Jimpaul, Shagolsem, Lenin S.

论文摘要

跟踪单个粒子和研究其运动是了解拥挤和复杂环境中动态的直接手段。在这项研究中,通过耗散粒子动力学模拟研究了液相密集的软悬浮液基质中示踪剂颗粒的动力学。通过考虑相对较大的示踪剂(胶体的三倍),我们系统地探索了示踪剂在动力学上进行运动和与环境相互作用的环境之间的相互作用,以与热力学相互作用相比,与热能相比,在热力学冻结过渡的温度下,与热力学冻结过渡相比。为此,我们考虑了组成胶体颗粒的柔软度(即超柔软,中间和硬)的三种流体系统(即超柔软,中间和硬),这也改变了示踪剂类型,因为我们改变了示踪剂W.R.T.的柔软程度。从Ultra Soft到非常硬的胶体。发现对于超柔软的胶体流体中的示踪剂,长期以来,运动对于所有示踪剂类型来说都是扩散的,但是随着示踪剂在给定温度下的硬度,弛豫时间(或扩散常数)增加(或减小)。有趣的是,对于硬胶体流体中的示踪剂,运动从自由扩散(连续的轨迹)变为跳跃的轨迹,在长期局部振动之后间歇性跳跃的位置,因此位移分布函数显示出较高的峰值峰表明在不同时间(或长度)尺度上表明不同的动力学。

Tracking of individual particle and studying their motion serves as a direct means to understand the dynamics in crowded and complex environments. In this study, the dynamics of tracer particles in the matrix of dense soft-colloidal suspensions in fluid phase is studied by means of dissipative particle dynamics simulations. By considering relatively large tracer (three times that of colloid) we systematically explore the interplay between the environment in which the tracer undergoes motion and interaction with the environment on the dynamics for temperatures close to the thermodynamic freezing transition where the effect of pair-wise interaction is significant compared to thermal energy. To this end we consider three fluid systems differing in the degree of softness (i.e., ultra-soft, intermediate, and hard) of the constituent colloidal particles, also change tracer types in the sense that we vary the degree of softness of the tracer w.r.t. colloids from ultra-soft to very hard. It is found that for tracer in ultra-soft colloidal fluid, at long times, the motion is diffusive for all tracer types, however the relaxation time (or diffusion constant) increases (or decreases) with increasing hardness of tracer at a given temperature. Interestingly, for tracer in hard colloidal fluid, the motion changes from a free diffusion (continuous trajectory) to that of hopping where there is intermittent jumps following a long period of localized vibrations and consequently displacement distribution function show higher order peaks indicating different dynamics at different time (or length) scales.

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