Department of Mechanical Engineering, Carnegie Mellon University, Pittsburgh, PA 15213, USA.
Electrophoresis. 2010 Mar;31(5):850-9. doi: 10.1002/elps.200900574.
It is known that emulsions can be stabilized by the presence of particles that get trapped at fluid-fluid interfaces and prevent adjacent drops from coalescing with one another. We show here that such emulsions, or Pickering emulsions, can be destabilized by applying external electric fields. This is demonstrated experimentally by studying water drops in decane and silicone oil drops in corn oil in the presence of micro-sized particles. It is shown that the primary phenomenon responsible for the destabilization is the motion of particles on the surface of drops in the presence of a uniform electric field. Although there should be no electrostatic forces acting on neutral particles in a uniform electric field, the presence of the drop itself introduces nonuniformity, which leads to dielectrophoretic forces acting on the particles and is thus responsible for particle motions along the drop surface. Particles translate to either the poles or the equator of the drop, depending on the relative dielectric constants of the particles, the surrounding fluid and the fluid within the drop. Such motions break the particle barrier, thus allowing for drops to merge with one another and therefore destabilizing the emulsion.
众所周知,乳液可以通过存在于流体-流体界面处的颗粒来稳定,这些颗粒可以防止相邻的液滴彼此聚结。我们在这里表明,这种乳液(或称为 Pickering 乳液)可以通过施加外电场来使其不稳定。通过在存在微尺寸颗粒的情况下研究癸烷中的水滴和玉米油中的硅油滴来进行实验证明。结果表明,导致失稳的主要现象是在均匀电场存在下,液滴表面上颗粒的运动。尽管在均匀电场中,中性颗粒不应受到静电力的作用,但液滴本身的存在会引入非均匀性,从而导致在颗粒上施加介电泳力,这是导致颗粒沿液滴表面运动的原因。颗粒根据颗粒、周围流体和液滴内流体的相对介电常数,要么向液滴的极要么向液滴的赤道移动。这种运动打破了颗粒的阻碍,从而允许液滴相互融合,因此使乳液不稳定。