Transient simulations of the electrophoretic motion of a cylindrical particle through a 90° corner

被引:0
作者
Scott M. Davison
Kendra V. Sharp
机构
[1] The Pennsylvania State University,Department of Mechanical and Nuclear Engineering
来源
Microfluidics and Nanofluidics | 2008年 / 4卷
关键词
Electrophoresis; Cylindrical particle; Channel corner; Transient simulation; Particle transport;
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学科分类号
摘要
The trajectory of a cylindrical particle driven by electrophoresis was transiently simulated as the particle moves through a 90° corner. A variety of system parameters were tested to determine their impact on the particle motion. The zeta potential, channel width, and particle aspect ratio were shown to have a minimal effect on the particle motion. Conversely, the initial vertical position of the particle and initial angle with respect to the horizontal had a significant impact on the particle motion. The presence of the 90° corner acts to reduce the initial distribution of angles to the vertical of 90° to less than 30°, demonstrating the possibility of using a corner as a passive control element as part of a larger microfluidic system. However, the reduction in angle is limited to the area near the corner posing a limitation on this means of control.
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页码:409 / 418
页数:9
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