4.8 Article

Plasma polymerization in the design of new materials: looking through the lens of maleic anhydride plasma polymers

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MATERIALS TODAY CHEMISTRY
卷 23, 期 -, 页码 -

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ELSEVIER SCI LTD
DOI: 10.1016/j.mtchem.2021.100646

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Materials design; Plasma polymers; Maleic anhydride; Functionalized polymers; Surface chemistry

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Plasma polymerization is widely used for promoting changes in substrate wettability and its application areas and properties are expanding. These materials can be customized by varying the polymer chemistry and post-treatment processes, allowing them to be used in adhesives, water treatment, biomedicine, and other fields. The creation of nanostructures and the analysis of maleic anhydride plasma polymers are dynamic areas for new plasma polymer materials.
Plasma polymerization is a well-established process for the deposition of thin polymeric films on various types of substrates. The potential of this technique for promoting changes of substrate's wettability constitutes one of the most basic and often reported applications. However, as novel technological demands emerge, and with it the range of available characterizations, plasma polymers are having their niche of applications and properties expanded. The properties of these materials are commonly tailored through the variation of polymer chemistry, postfunctionalization, or other post-treatment processes. That chemical versatility allows the use of plasma polymers in adhesives, water treatment, biomedicine, and many other fields. The creation of nanostructures via lithography or during the deposition process itself constitutes other dynamic fields for new plasma polymer materials. In the current review, the design of materials through plasma polymerization is addressed with the direction given by our expertise in maleic anhydride plasma polymers (MAPP). A non-exhaustive number of applications of plasma polymers is provided to non-specialists as an overview of the materials coming out from the field of this chemical-vapor deposition process. A complete analysis of the literature on maleic anhydride plasma polymers is also performed. (c) 2021 Elsevier Ltd. All rights reserved.

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