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Layer-by-layer adsorption: Factors affecting the choice of substrates and polymers

机译:逐层吸附:影响基材和聚合物选择的因素

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摘要

The electrostatic layer-by-layer technique for fabrication of multi-layered structures of various sizes and shapes using flat and colloidal templates coupled with polyelectrolyte layer-forming materials has attracted significant interest among both academic and industrial researchers due to its versatility and relative simplicity of the procedures involved in its execution. Fabrication of the multi-layered structures using the electrostatic layer-by-layer method involves several distinct stages each of which holds great importance when considering the production of a high-quality product. These stages include selection of materials (both template and a pair of construction polyelectrolytes), adsorption of the first polyelectrolyte layer onto the selected templates, formation of the second layer comprised of the oppositely charged polyelectrolyte and guided by the interactions between the two chosen polyelectrolytes, and multi-layering, where a selected number of layers are produced, and which is conditioned by both intrinsic properties of the involved construction materials and external fabrication conditions such as temperature, pH and ionic strength. The current review summarises the most important aspects of each stage mentioned above and gives examples of the materials suitable for utilization of the technique and describes the underlying physics involved. (C) 2018 Elsevier B.V. All rights reserved.
机译:用于制造各种尺寸和形状的多层结构的静电层逐层技术使用平面和胶体模板与聚电解质层形成材料引起了学术和工业研究人员的显着兴趣,因为它的多功能性和相对简单涉及其执行的程序。使用静电层 - 逐层法制备多层结构涉及几个不同的阶段,每个阶段在考虑到生产高质量产品时具有重​​要意义。这些阶段包括材料选择材料(两者和一对施工聚电解质),将第一聚电解质层吸附到所选择的模板上,形成由相对电荷的聚电解质组成的第二层,并通过两个所选择的聚电解质之间的相互作用引导,和多层,其中产生所选数量的层,并且通过所涉及的构造材料的内在性质和外部制造条件,例如温度,pH和离子强度,是调节的。目前的审查总结了上述每个阶段的最重要方面,并给出了适用于利用该技术的材料的实例,并描述所涉及的潜在物理学。 (c)2018 Elsevier B.v.保留所有权利。

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