Funaki Masuro, Suwa Masayori, Watarai Hitoshi
Department of Chemistry, Graduate School of Science, Osaka University.
Institute for NanoScience Design, Osaka University.
Anal Sci. 2017;33(9):1013-1019. doi: 10.2116/analsci.33.1013.
The electromagnetophoretic behavior of organic droplets in an electrolyte solution was investigated in a silica capillary cell using a superconducting bulk magnet (3.5 T) and a magnetic circuit (2.7 T). The initially dispersed emulsion droplets of dodecane migrated to the wall of the capillary, responding to the direction of an electric current, and coalesced to form smaller and larger droplets after some repeated migrations. When the electric current was applied continuously, the larger droplets became arranged with regular intervals on the wall, and smaller droplets rotated around the larger droplets. These interesting behaviors were analyzed while taking into account the local electric current density determined by the flow velocity of the ionic current around a droplet, which was lowest on the electrode sides of the droplet. The difference in the local electric current density generated the Lorentz-force difference in the medium, which lead to local micro-convection around the droplet, and also the alignment of larger droplets by a repelling effect between the adjacent micro-convections.
在二氧化硅毛细管池中,使用超导块体磁体(3.5 T)和磁路(2.7 T)研究了有机液滴在电解质溶液中的电磁泳行为。最初分散的十二烷乳液液滴响应电流方向迁移至毛细管壁,并在多次重复迁移后聚并形成越来越大或越来越小的液滴。当持续施加电流时,较大的液滴在壁上以规则间隔排列,较小的液滴围绕较大的液滴旋转。在考虑由液滴周围离子电流流速决定的局部电流密度的情况下,对这些有趣的行为进行了分析,该局部电流密度在液滴的电极侧最低。局部电流密度的差异在介质中产生了洛伦兹力差,这导致了液滴周围的局部微对流,以及相邻微对流之间的排斥作用使较大液滴排列整齐。