Department of Materials Science and Engineering, Michigan Technological University, Houghton, MI 49931, USA.
J Colloid Interface Sci. 2013 Jul 15;402:267-78. doi: 10.1016/j.jcis.2013.03.047. Epub 2013 Apr 11.
The self-assembly behavior of shape-anisotropic particles at curved fluid interfaces is computationally investigated by diffuse interface field approach (DIFA). A Gibbs-Duhem-type thermodynamic formalism is introduced to treat heterogeneous pressure within the phenomenological model, in agreement with Young-Laplace equation. Computer simulations are performed to study the effects of capillary forces (interfacial tension and Laplace pressure) on particle self-assembly at fluid interfaces in various two-dimensional cases. For isolated particles, it is found that the equilibrium liquid interface remains circular and particles of different shapes do not disturb the homogeneous curvature of liquid interface, while the equilibrium position, orientation and stability of a particle at the liquid interface depend on its shape and initial location with respect to the liquid interface. For interacting particles, the curvature of local liquid interfaces is different from the apparent curvature of the particle shell; nevertheless, irrespective of the particle shapes, a particle-coated droplet always tends to deform into a circular morphology under positive Laplace pressure, loses mechanical stability and collapses under negative Laplace pressure, while adapts to any morphology and stays in neutral equilibrium under zero Laplace pressure. Finally, the collective behaviors of particles and Laplace pressure evolution in bicontinuous interfacially jammed emulsion gels (bijels) are investigated.
采用弥散界面场方法(DIFA)计算研究了各向异性颗粒在弯曲流体界面处的自组装行为。为了与杨-拉普拉斯方程一致,在唯象模型中引入了吉布斯-杜恒型热力学公式来处理不均匀压力。进行计算机模拟以研究在各种二维情况下毛细力(界面张力和拉普拉斯压力)对颗粒在流体界面处自组装的影响。对于孤立的颗粒,发现平衡的液体界面保持圆形,并且不同形状的颗粒不会干扰液体界面的均匀曲率,而颗粒在液体界面处的平衡位置、取向和稳定性取决于其形状和相对于液体界面的初始位置。对于相互作用的颗粒,局部液体界面的曲率与颗粒壳的表观曲率不同;然而,无论颗粒形状如何,在正拉普拉斯压力下,颗粒包覆的液滴总是趋向于变形为圆形形态,在负拉普拉斯压力下失去机械稳定性并坍塌,而在零拉普拉斯压力下适应任何形态并保持中性平衡。最后,研究了颗粒的集体行为和界面相中堵塞乳液凝胶(双连续)中拉普拉斯压力的演变。