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Manipulating single annealed polyelectrolyte under alternating current electric fields: Collapse versus accumulation

机译:在交流电场下处理单个退火的聚电解质:坍塌与积累

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摘要

Effective manipulation and understanding of the structural and dynamic behaviors of a single polyelectrolyte (PE) under alternating current (AC) electric fields are of great scientific and technological importance because of its intimate relevance to emerging bionanotechnology. In this work, we employ fluorescence correlation spectroscopy (FCS) to study the conformational and AC-electrokinetic behaviors of a model annealed PE, poly(2-vinyl pyridine) (P2VP) under both spatially uniform and non-uniform AC fields at a single molecule level. Under spatially uniform AC-fields, we observe a gradual and continuous coil-to-globule conformational transition (CGT) of single P2VP at varied AC-frequency when a critical AC-field strength is exceeded, in contrast to the pH-induced abrupt CGT in the absence of AC-fields. On the contrary, under spatially non-uniform AC-fields, we observe field-driven net flow and accumulation of P2VP near high AC-field regions due to combined AC electro-osmosis and dielectrophoresis but surprisingly no conformational change. Thus, distinct AC-electric polarization effect on single annealed PE subject to AC-field homogeneity is suggested.
机译:由于其与新兴的生物纳米技术密切相关,因此有效地操纵和理解交流电(AC)电场下单个聚电解质(PE)的结构和动力学行为具有重大的科学技术意义。在这项工作中,我们采用荧光相关光谱法(FCS)来研究模型退火的PE,聚(2-乙烯基吡啶)(P2VP)在单一空间空间均匀和非均匀AC场下的构象和AC电动行为。分子水平。在空间均匀的交流场下,当超过临界交流场强度时,我们观察到单个P2VP在变化的交流频率下逐渐且连续的线圈-球构象转变(CGT),这与pH诱导的突变CGT相反在没有交流场的情况下。相反,在空间不均匀的交流电场下,由于交流电渗透和介电电泳的结合,我们观察到电场驱动的净流量和高交流电场附近P2VP的积累,但出乎意料的是没有构象变化。因此,建议对经受交流场均匀性的单个退火PE施加明显的交流电极化效应。

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