4.5 Article

Electrophoretic mobility of oil droplets in electrolyte and surfactant solutions

Journal

ELECTROPHORESIS
Volume 36, Issue 19, Pages 2489-2497

Publisher

WILEY-BLACKWELL
DOI: 10.1002/elps.201500062

Keywords

Charge redistribution; Droplet electrophoresis; Electrophoretic mobility; Ionic surfactant; Vortex interaction

Funding

  1. Fundamental Research Funds for the Central Universities [3132014336]
  2. Liaoning Science Foundation [2014025020]
  3. Liaoning Excellent Talent Supporting Plan from China [LJQ2014050]
  4. Natural Sciences and Engineering Research Council of Canada
  5. Dalian Maritime University
  6. University 111 project of China [B08046]

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Electrophoretic mobility of oil droplets of micron sizes in PBS and ionic surfactant solutions was measured in this paper. The experimental results show that, in addition to the applied electric field, the speed and the direction of electrophoretic motion of oil droplets depend on the surfactant concentration and on if the droplet is in negatively charged SDS solutions or in positively charged hexadecyltrimethylammonium bromide (CTAB) solutions. The absolute value of the electrophoretic mobility increases with increased surfactant concentration before the surfactant concentration reaches to the CMC. It was also found that there are two vortices around the oil droplet under the applied electric field. The size of the vortices changes with the surfactant and with the electric field. The vortices around the droplet directly affect the drag of the flow field to the droplet motion and should be considered in the studies of electrophoretic mobility of oil droplets. The existence of the vortices will also influence the determination and the interpretation of the zeta potential of the oil droplets based on the measured mobility data.

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