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Conformation and Dynamics of Long-Chain End-Tethered Polymers in Microchannels

机译:长链末端束缚聚合物在微通道中的构象和动力学

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摘要

Polyelectrolytes constitute an important group of materials, used for such different purposes as the stabilization of emulsions and suspensions or oil recovery. They are also studied and utilized in the field of microfluidics. With respect to the latter, a part of the interest in polyelectrolytes inside microchannels stems from genetic analysis, considering that deoxyribonucleic acid (DNA) molecules are polyelectrolytes. This review summarizes the single-molecule experimental and molecular dynamics simulation-based studies of end-tethered polyelectrolytes, especially addressing their relaxation dynamics and deformation characteristics under various external forces in micro-confined environments. In most of these studies, DNA is considered as a model polyelectrolyte. Apart from summarizing the results obtained in that area, the most important experimental and simulation techniques are explained.
机译:聚电解质构成一组重要的材料,可用于稳定乳液和悬浮液或回收油等不同目的。它们也在微流体领域被研究和利用。关于后者,考虑到脱氧核糖核酸(DNA)分子是聚电解质,对微通道内部的聚电解质的部分兴趣来自遗传分析。这篇综述总结了基于末端束缚的聚电解质的单分子实验和基于分子动力学模拟的研究,特别是解决了它们在微密闭环境中在各种外力作用下的弛豫动力学和变形特性。在大多数这些研究中,DNA被视为模型聚电解质。除了总结在该领域获得的结果外,还介绍了最重要的实验和模拟技术。

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