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具有动态多分散性的响应性胶体的结构与动力学

Structure and dynamics of responsive colloids with dynamical polydispersity.

作者信息

Baul Upayan, Dzubiella Joachim

机构信息

Applied Theoretical Physics-Computational Physics, Physikalisches Institut, Albert-Ludwigs-Universität Freiburg, D-79104 Freiburg, Germany.

Cluster of Excellence livMatS @ FIT - Freiburg Center for Interactive Materials and Bioinspired Technologies, Albert-Ludwigs-Universität Freiburg, D-79110 Freiburg, Germany.

出版信息

J Phys Condens Matter. 2021 Apr 20;33(17). doi: 10.1088/1361-648X/abdbaa.

Abstract

Dynamical polydispersity in single-particle properties, for example a fluctuating particle size, shape, charge density, etc, is intrinsic to responsive colloids (RCs), such as biomacromolecules or microgels, but is typically not resolved in coarse-grained mesoscale simulations. Here, we present Brownian dynamics simulations of suspensions of RCs modeling soft hydrogel colloids, for which the size of the individual particles is an explicitly resolved (Gaussian) degree of freedom and dynamically responds to the local interacting environment. We calculate the liquid structure, emergent size distributions, long-time diffusion, and property (size) relaxation kinetics for a wide range of densities and intrinsic property relaxation times in the canonical ensemble. Comparison to interesting reference cases, such as conventional polydisperse suspensions with a frozen parent distribution, or conventional monodisperse systems interacting with an effective pair potential for one fixed size, shows a significant spread in the structure and dynamics. The differences, most apparent in the high density regimes, are due to many-body correlations and the dynamical coupling between property and translation in RC systems, not explicitly accounted for in the conventional treatments. In particular, the translational diffusion in the RC systems is surprisingly close to the free (single RC) diffusion, mainly due to a cancellation of crowding and size compression effects. We show that an effective monodisperse pair potential can be constructed that describes the many-body correlations reasonably well by convoluting the RC pair potential with the density-dependent emergent size distributions and using a mean effective diffusion constant.

摘要

单粒子性质的动态多分散性,例如粒径、形状、电荷密度等的波动,是响应性胶体(RCs)(如生物大分子或微凝胶)所固有的,但在粗粒度中尺度模拟中通常无法得到解决。在这里,我们展示了对模拟软水凝胶胶体的RCs悬浮液的布朗动力学模拟,其中单个粒子的大小是一个明确解析的(高斯)自由度,并能动态响应局部相互作用环境。我们在正则系综中计算了广泛密度范围和固有性质弛豫时间下的液体结构、出现的尺寸分布、长时间扩散以及性质(尺寸)弛豫动力学。与有趣的参考案例进行比较,例如具有固定母体分布的传统多分散悬浮液,或与一个固定大小的有效对势相互作用的传统单分散系统,结果表明结构和动力学存在显著差异。这些差异在高密度区域最为明显,这是由于多体关联以及RC系统中性质与平移之间的动态耦合,而传统处理方法并未明确考虑这些因素。特别是,RC系统中的平移扩散令人惊讶地接近自由(单个RC)扩散,这主要是由于拥挤效应和尺寸压缩效应的相互抵消。我们表明,可以通过将RC对势与密度依赖的出现尺寸分布进行卷积,并使用平均有效扩散常数,构建一个能合理描述多体关联的有效单分散对势。

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