Laboratoire Charles Coulomb (L2C), University of Montpellier, CNRS, Montpellier, France; Institut Charles Sadron (ICS), CNRS, 23 Rue du Loess, 67034 Strasbourg, France.
Laboratoire Charles Coulomb (L2C), University of Montpellier, CNRS, Montpellier, France.
J Colloid Interface Sci. 2019 Apr 15;542:363-369. doi: 10.1016/j.jcis.2019.02.017. Epub 2019 Feb 6.
Rotational Brownian diffusions of colloidal particles at a fluid interface play important roles in particle self-assembly and in surface microrheology. Recent experiments on translational Brownian motion of spherical particles at the air-water interface show a significant slowing down of the translational diffusion with respect to the hydrodynamic predictions (Boniello et al., 2015). For the rotational diffusions of partially wetted colloids, slowing down of the particle dynamics can be also expected.
Here, the rotational dynamics of Janus colloids at the air-water interface have been experimentally investigated using optical microscopy. Bright field and fluorescent microscopies have been used to measure the in-plane and out-of-plane particle rotational diffusions exploiting the Janus geometry of the colloids we fabricated.
Our results show a severe slowing down of the rotational diffusion D connected to the contact line motion and wetting-dewetting dynamics occurring on particle regions located at opposite liquid wedges. A slowing down of the particle rotational diffusion about an axis parallel to the interfacial normal D was also observed. Contact line fluctuations due to partial wetting dynamics lead to a rotational line friction that we have modelled in order to describe our results.
胶体粒子在流体界面处的旋转布朗扩散在粒子自组装和表面微流变学中起着重要作用。最近在空气-水界面上球形粒子的平移布朗运动的实验表明,平移扩散相对于流体力学预测显著减慢(Boniello 等人,2015 年)。对于部分润湿胶体的旋转扩散,也可以预期粒子动力学的减慢。
在这里,使用光学显微镜实验研究了空气-水界面上的 Janus 胶体的旋转动力学。利用我们制造的胶体的 Janus 几何形状,通过明场和荧光显微镜测量了平面内和平面外的粒子旋转扩散。
我们的结果表明,与接触线运动和发生在位于相反液体楔形物的粒子区域的润湿-去湿动力学相关的旋转扩散 D 严重减慢。还观察到与界面法向平行的轴的粒子旋转扩散 D 的减慢。由于部分润湿动力学引起的接触线波动导致旋转线摩擦,我们已经对其进行了建模,以描述我们的结果。