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颗粒大小和电荷对非线性电泳的依赖性。

Dependence of Nonlinear Electrophoresis on Particle Size and Electrical Charge.

机构信息

Microscale Bioseparations Laboratory and Biomedical Engineering Department, Rochester Institute of Technology, 160 Lomb Memorial Drive, Rochester, New York 14623, United States.

出版信息

Anal Chem. 2023 Apr 25;95(16):6595-6602. doi: 10.1021/acs.analchem.2c05595. Epub 2023 Apr 12.

Abstract

This study focuses on the dependence of nonlinear electrophoretic migration of particles on the particle size and particle electrical charge. This is the first report of the experimental assessment of the mobilities of the nonlinear electrophoretic velocity of colloidal polystyrene microparticles under two distinct electric field dependences. A total of nine distinct types of polystyrene microparticles of varying size and varying electrical charge were divided into two groups to study separately the effects of particle size and the effects of particle charge. The mobilities of the nonlinear electrophoretic velocity of each particle type were determined in both the cubic and 3/2 regimes (μ and μ). The results unveiled that both mobilities had similar relationships with particle size and charge. The magnitude of both μ and μ increased with increasing particle size and decreased with increasing magnitude of particle charge. However, the observed trends were not perfect as discussed in the Results and Discussion section but still provide valuable information. These findings will aid in the design of future size-based and charge-based separations of particles and microorganisms.

摘要

本研究侧重于颗粒的非线性电泳迁移率对颗粒大小和颗粒电荷的依赖性。这是首次报道在两种不同的电场依赖性下,胶体聚苯乙烯微颗粒的非线性电泳速度迁移率的实验评估。总共九种不同类型的具有不同大小和不同电荷的聚苯乙烯微颗粒被分为两组,分别研究颗粒大小和颗粒电荷的影响。在立方和 3/2 区域(μ 和 μ)中确定了每种颗粒类型的非线性电泳速度迁移率。结果表明,两种迁移率与颗粒大小和电荷都有相似的关系。μ 和 μ 的大小都随着颗粒尺寸的增大而增大,随着颗粒电荷的增大而减小。然而,正如在结果和讨论部分所讨论的,观察到的趋势并不完美,但仍提供了有价值的信息。这些发现将有助于设计未来基于大小和基于电荷的颗粒和微生物分离。

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