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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Quantitative assessment of flow and electric fields for electrophoretic focusing at a converging channel entrance with interfacial electrode
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Quantitative assessment of flow and electric fields for electrophoretic focusing at a converging channel entrance with interfacial electrode

机译:带有界面电极的汇流通道入口处电泳聚焦的流场和电场的定量评估

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摘要

The electric field and flow field gradients near an electrified converging channel are amenable to separating and focusing specific classes of electrokinetic material, but the detailed local electric field and flow dynamics in this region have not been thoroughly investigated. Finite elemental analysis was used to develop a model of a buffer reservoir connected to a smaller channel to simulate the electrophoretic and flow velocities (which correspond directly to the respective electric and flow fields) at a converging entrance. A detailed PTV (Particle Tracking Velocimetry) study using charged fluorescent microspheres was performed to assess the model validity both in the absence and presence of an applied electric field. The predicted flow velocity gradient from the model agreed with the PTV data when no electric field was present. Once the additional forces that act on the large particles required for tracing (dielectrophoresis) were included, the model accurately described the velocity of the charged particles in electric fields.
机译:电动会聚通道附近的电场和流场梯度适合于分离和集中特定类别的动电材料,但尚未对该区域的详细局部电场和流动力学进行彻底研究。有限元分析用于建立连接到较小通道的缓冲液储罐的模型,以模拟汇聚入口处的电泳和流速(直接对应于各自的电场和流场)。使用带电的荧光微球进行了详细的PTV(粒子跟踪测速)研究,以评估在不存在和存在电场的情况下模型的有效性。当不存在电场时,来自模型的预测流速梯度与PTV数据一致。一旦包括了作用在描迹(介电泳)所需的大粒子上的附加力,该模型就可以准确地描述电场中带电粒子的速度。

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