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底物类型在聚电解质多层膜形成过程中的作用。

Role of Substrate Type in the Process of Polyelectrolyte Multilayer Formation.

作者信息

Mesić Mia, Klačić Tin, Abram Anže, Bohinc Klemen, Kovačević Davor

机构信息

Department of Chemistry, Division of Physical Chemistry, Faculty of Science, University of Zagreb, 10000 Zagreb, Croatia.

Department for Nanostructured Materials, Jožef Stefan Institute, 1000 Ljubljana, Slovenia.

出版信息

Polymers (Basel). 2022 Jun 24;14(13):2566. doi: 10.3390/polym14132566.

Abstract

Polyelectrolyte multilayers are coatings formed by the alternate deposition of polycations and polyanions on a charged surface. In this study we examined how the type of substrate affects a multilayer prepared from poly(allylamine hydrochloride) and poly(acrylic acid). Silicon and titanium wafers were used as substrates. Their properties were systematically studied using ellipsometry, tensiometry, atomic force microscopy and streaming potential measurements. Multilayers were built up at pH = 7 with tetramethylammonium chloride as the background salt. The growth of films was monitored by ellipsometry, while the morphology and surface roughness were determined by atomic force microscopy. It was found that the thickness of multilayers containing 10 layers on silicon is 10 nm, whereas the thickness of the same film on titanium is three times higher. It was shown that multilayers formed on silicon display a grain-like structure, which was not the case for a film formed on titanium. Such morphological properties are also reflected in the surface roughness. Finally, it was shown that, in addition to the electrostatic interactions, the hydrophobicity of the substrate also plays an important role in the polyelectrolyte multilayer formation process and influences its thickness and properties.

摘要

聚电解质多层膜是通过聚阳离子和聚阴离子在带电表面交替沉积形成的涂层。在本研究中,我们研究了基底类型如何影响由聚(烯丙胺盐酸盐)和聚(丙烯酸)制备的多层膜。使用硅片和钛片作为基底。使用椭偏仪、张力测量法、原子力显微镜和流动电势测量对它们的性质进行了系统研究。在pH = 7的条件下,以四甲基氯化铵作为背景盐构建多层膜。通过椭偏仪监测膜的生长,而通过原子力显微镜确定形态和表面粗糙度。发现含10层的多层膜在硅上的厚度为10nm,而在钛上相同膜的厚度高出三倍。结果表明,在硅上形成的多层膜呈现出颗粒状结构,而在钛上形成的膜则不然。这种形态学性质也反映在表面粗糙度上。最后,结果表明,除了静电相互作用外,基底的疏水性在聚电解质多层膜形成过程中也起着重要作用,并影响其厚度和性质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3bd8/9269168/bc16d6df2978/polymers-14-02566-g001.jpg

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