Gittus Oliver R, Olarte-Plata Juan D, Bresme Fernando
Department of Chemistry, Molecular Sciences Research Hub, Imperial College London, W12 0BZ, London, UK.
Eur Phys J E Soft Matter. 2019 Jul 18;42(7):90. doi: 10.1140/epje/i2019-11852-5.
The drift motion experienced by colloids immersed in a fluid with an intrinsic temperature gradient is referred to as thermophoresis. An anisotropic mass distribution inside colloidal particles imparts a net orientation with respect to the applied thermal field, and in turn alters the thermophoretic response of the colloids. This rectification of the rotational Brownian motion is called thermal orientation. To explore the sensitivity of the thermal orientation effect with the internal composition of colloids, we investigate the thermophoretic response of rod-like colloids in the dilute regime, targeting different internal mass distributions. We derive phenomenological equations to model the dependence of the Soret coefficient with degree of mass anisotropy and test these equations using non-equilibrium molecular dynamics simulations. Using both theory and simulation, we show that the average orientation and the Soret coefficients of the colloids can depend significantly on the internal mass distribution. This observation suggests an approach to identify internal colloidal compositions using thermal gradients as sensing probes.
沉浸在具有固有温度梯度的流体中的胶体所经历的漂移运动被称为热泳。胶体颗粒内部的各向异性质量分布赋予了相对于所施加热场的净取向,进而改变了胶体的热泳响应。这种旋转布朗运动的整流被称为热取向。为了探究热取向效应随胶体内部组成的敏感性,我们研究了稀溶液状态下棒状胶体的热泳响应,针对不同的内部质量分布。我们推导了唯象方程来模拟索雷特系数与质量各向异性程度的依赖关系,并使用非平衡分子动力学模拟来检验这些方程。通过理论和模拟,我们表明胶体的平均取向和索雷特系数会显著依赖于内部质量分布。这一观察结果提出了一种利用热梯度作为传感探针来识别胶体内部组成的方法。