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聚合物刷中的压力各向异性及其对润湿性的影响。

Pressure Anisotropy in Polymer Brushes and Its Effects on Wetting.

作者信息

Veldscholte Lars B, Snoeijer Jacco H, den Otter Wouter K, de Beer Sissi

机构信息

Functional Polymer Surfaces, Department of Molecules and Materials, MESA+ Institute, University of Twente, 7500 AE Enschede, The Netherlands.

Physics of Fluids, MESA+ Institute, University of Twente, 7500 AE Enschede, The Netherlands.

出版信息

Langmuir. 2024 Feb 27;40(8):4401-4409. doi: 10.1021/acs.langmuir.3c03727. Epub 2024 Feb 15.

Abstract

Polymer brushes, coatings consisting of densely grafted macromolecules, experience an intrinsic lateral compressive pressure, originating from chain elasticity and excluded volume interactions. This lateral pressure complicates a proper definition of the interface and, thereby, the determination and interpretation of the interfacial tension and its relation to the wetting behavior of brushes. Here, we study the link among grafting-induced compressive lateral pressure in polymer brushes, interfacial tension, and brush wettability using coarse-grained molecular dynamics simulations. We focus on grafting densities and polymer-liquid affinities such that the polymer and liquid do not tend to mix. For these systems, a central result is that the liquid contact angle is independent of the grafting density, which implies that the grafting-induced lateral compressive pressure in the brush does not influence its wettability. Although the definition of brush interfacial tensions is complicated by the grafting-induced pressure, the difference in the interfacial tension between wet and dry brushes is perfectly well-defined. We confirm explicitly from Young's law that this difference offers an accurate description of the brush wettability. We then explore a method to isolate the grafting-induced contribution to the lateral pressure, assuming the interfacial tension is independent of grafting density. This scenario indeed allows disentanglement of interfacial and grafting effects for a broad range of parameters, except close to the mixing point. We separately discuss the latter case in light of autophobic dewetting.

摘要

聚合物刷是由密集接枝的大分子组成的涂层,会经历一种源自链弹性和排除体积相互作用的固有横向压缩压力。这种横向压力使得界面的准确定义变得复杂,进而使界面张力的测定和解释以及它与刷的润湿行为的关系也变得复杂。在这里,我们使用粗粒度分子动力学模拟研究聚合物刷中接枝诱导的压缩横向压力、界面张力和刷的润湿性之间的联系。我们关注接枝密度和聚合物 - 液体亲和力,使得聚合物和液体不会倾向于混合。对于这些体系,一个核心结果是液体接触角与接枝密度无关,这意味着刷中接枝诱导的横向压缩压力不会影响其润湿性。尽管接枝诱导压力使刷界面张力的定义变得复杂,但湿刷和干刷之间的界面张力差异是完全明确的。我们从杨氏定律明确证实,这种差异准确地描述了刷的润湿性。然后,假设界面张力与接枝密度无关,我们探索一种方法来分离接枝诱导对横向压力的贡献。除了接近混合点的情况外,这种情况确实允许在广泛的参数范围内解开界面和接枝效应。我们根据自憎性去湿分别讨论后一种情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/07c7/10905992/833deba9335e/la3c03727_0001.jpg

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