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Deposition Mechanisms in Layer-by-Layer or Step-by-Step Deposition Methods: From Elastic and Impermeable Films to Soft Membranes with Ion Exchange Properties

机译:分层或逐步沉积方法中的沉积机理:从弹性和不渗透膜到具有离子交换特性的软膜

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摘要

The modification of solid-liquid interfaces with polyelectrolyte multilayer films appears as a versatile tool to confer new functionalities to surfaces in environmentally friendly conditions. Indeed such films are deposited by alternate dipping of the substrates in aqueous solutions containing the interacting species or spraying these solutions on the surface of the substrate. Spin coating is more and more used to produce similar films. The aim of this short review article is to provide an unifying picture about the deposition mechanisms of polyelectrolyte multilayer films. Often those films are described as growing either in a linear or in a supralinear growth regime with the number of deposited “layer pairs”. The growth regime of PEM films can be controlled by operational parameters like the temperature or the ionic strength of the used solutions. The control over the growth regime of the films as a function of the number of deposition steps allows to control their functional properties: either hard and impermeable films in the case of linear growth or soft and permeable films in the case of supralinear growth. Such different properties can be obtained with a given combination of interacting species by changing the operational parameters during the film deposition.
机译:用聚电解质多层膜对固-液界面进行改性似乎是在环境友好的条件下赋予表面新功能的多功能工具。实际上,这样的膜是通过将基材交替浸入含有相互作用物质的水溶液中或将这些溶液喷涂在基材表面上而沉积的。旋涂越来越多地用于生产类似的薄膜。这篇简短评论文章的目的是提供有关聚电解质多层膜沉积机理的统一图片。通常,这些薄膜被描述为以线性或超线性生长方式生长,且沉积的“层对”的数量多。 PEM膜的生长方式可以通过操作参数(例如所用溶液的温度或离子强度)进行控制。根据沉积步骤数来控制薄膜的生长方式可以控制其功能特性:线性生长时为硬膜和不渗透膜,而超线性生长时为软膜和渗透性膜。通过在膜沉积期间改变操作参数,可以通过给定的相互作用物种组合获得这种不同的性能。

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