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电链重排:当刷状聚合物存在电荷梯度时会发生什么?

Electrical Chain Rearrangement: What Happens When Polymers in Brushes Have a Charge Gradient?

作者信息

Smook Leon A, de Beer Sissi

机构信息

Department of Molecules and Materials, MESA+ Institute for Nanotechnology, University of Twente, P.O. Box 217, Enschede 7500 AE, The Netherlands.

出版信息

Langmuir. 2024 Feb 27;40(8):4142-4151. doi: 10.1021/acs.langmuir.3c03127. Epub 2024 Feb 14.

Abstract

Under the influence of electric fields, the chains in polyelectrolyte brushes can stretch and collapse, which changes the structure of the brush. Copolymer brushes with charged and uncharged monomers display a similar behavior. For pure polyelectrolyte and random copolymer brushes, the field-induced structure changes only the density of the brush and not its local composition, while the latter could be affected if charges are distributed inhomogeneously along the polymer backbone. Therefore, we systematically study the switching behavior of gradient polyelectrolyte brushes in electric fields for different solvent qualities, grafting densities, and charges per chain via coarse-grained molecular dynamics simulations. Similar to random copolymers and pure polyelectrolytes, these brushes show a mixed-phase transition: intermediate states between fully stretched and collapsed are characterized by a bimodal chain-end distribution. Additionally, we find that the total charge of the brush plays a key role in the critical field required for a complete transition. Finally, we find that gradient polyelectrolyte brushes are charge-enriched at the brush-solvent interface under stretched conditions and charge-depleted under collapsed conditions, allowing for control over the local composition and thus the surface charge of the brush due to the inhomogeneous charge along the grafted chains.

摘要

在电场的影响下,聚电解质刷中的链会伸展和塌缩,这会改变刷的结构。带有带电和不带电单体的共聚物刷表现出类似的行为。对于纯聚电解质刷和无规共聚物刷,电场诱导的结构变化仅改变刷的密度,而不改变其局部组成,而如果电荷沿聚合物主链不均匀分布,则后者可能会受到影响。因此,我们通过粗粒化分子动力学模拟,系统地研究了不同溶剂性质、接枝密度和每条链电荷数情况下梯度聚电解质刷在电场中的开关行为。与无规共聚物和纯聚电解质类似,这些刷呈现出混合相变:完全伸展和塌缩之间的中间状态以双峰链端分布为特征。此外,我们发现刷的总电荷在完全转变所需的临界场中起关键作用。最后,我们发现梯度聚电解质刷在伸展条件下在刷 - 溶剂界面处电荷富集,而在塌缩条件下电荷贫化,这使得由于接枝链上电荷不均匀而能够控制刷的局部组成,进而控制刷的表面电荷。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc24/10906002/0f3d40a179d0/la3c03127_0001.jpg

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