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Electrokinetics of pH-regulated zwitterionic polyelectrolyte nanoparticles

机译:动电学的pH-regulated两性离子聚电解质纳米颗粒

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摘要

The electrokinetic behavior of pH-regulated, zwitterionic polyelectrolyte (PE) nanoparticles (NPs) in a general electrolyte solution containing multiple ionic species is investigated for the first time. The NPs considered are capable of simulating entities such as proteins, biomolecules, and synthetic polymers. The applicability of the model proposed is verified by the experimental data of succinoglycan nanoparticles available in the literature. We show that, in addition to their effective charge density, counterion condensation, double-layer polarization, and electro-osmotic flow of unbalanced counterions inside the double layer all significantly affect the electrophoretic behaviors of NPs. Our model successfully predicts many interesting electrophoretic behaviors, which qualitatively agree with experimental observations available in the literature. In contrast, because the effects of double-layer polarization and charge regulation are neglected, the existing theoretical models fail to explain the experimental results. The results gathered provide necessary information for the interpretation of relevant electrophoresis data in practice, and for nanofiuidic applications such as biomimetic ion channels and nanopore-based sensing of single biomolecules.
机译:pH-regulated的动电的行为,两性离子聚电解质(PE)纳米颗粒(NPs)一般电解质的解决方案包含多个离子物种调查第一次。能够模拟实体(如蛋白质,生物分子,合成聚合物。验证模型的适用性提出了succinoglycan的实验数据纳米粒子在文学。表明,除了有效的电荷密度、反离子凝结,双层极化和electro-osmotic流动不平衡的抗衡离子在双电层内所有显著影响电泳NPs的行为。许多有趣的电泳行为定性同意实验观察在文献中可用。相反,因为双层的影响极化和负责监管是被忽视的,现有的理论模型无法解释实验结果。提供必要的信息解释有关电泳数据在实践中,对于nanofiuidic应用程序如仿生离子通道和纳米孔检测的单个生物分子。

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