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      Poly(Methyl Methacrylate) Coatings Containing Flame Retardant Additives from Suspensions in Water-2-Propanol

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          Abstract

          A dip-coating technique is designed for deposition of poly(methyl methacrylate) (PMMA) from water/2-propanol mixture, avoiding the use of traditional toxic solvents. Solutions of PMMA macromolecules with high molecular weight (M W) are obtained for a water/2-propanol ratio of 0.15–0.33 and the solubilization mechanism is discussed. The ability to use concentrated PMMA solutions and high M W of the polymer are the key factors for the successful dip coating deposition. The coating mass for 10 g L −1 polymer solutions shows a maximum at a water/2-propanol ratio of 0.25. The deposition yield increases with the polymer concentration increase and with an increasing number of the deposited layers. PMMA deposits protect stainless steel from aqueous corrosion. The coating technique allows for the fabrication of composite coatings, containing flame-retardant materials (FRMs), such as commercial halloysite, huntite, hydrotalcite, and synthesized Al(OH) 3, in the PMMA matrix. The FRM content in the coatings is modified by variation of the FRM content in colloidal suspensions. A fundamentally new method is developed, which is based on the salting out aided dispersive extraction of Al(OH) 3 from the aqueous synthesis medium to 2-propanol. It is based on the use of hexadecylphosphonic acid molecules as extractors. The method offers advantages of reduced agglomeration.

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          Most cited references46

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          New prospects in flame retardant polymer materials: From fundamentals to nanocomposites

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            A Review of the Properties and Applications of Poly (Methyl Methacrylate) (PMMA)

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              Polymers with upper critical solution temperature behavior in alcohol/water solvent mixtures

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                Author and article information

                Contributors
                Role: Academic Editor
                Journal
                Molecules
                Molecules
                molecules
                Molecules
                MDPI
                1420-3049
                31 March 2021
                April 2021
                : 26
                : 7
                : 1974
                Affiliations
                [1 ]Department of Materials Science and Engineering, McMaster University, Hamilton, ON L8S4L7, Canada; lix387@ 123456mcmaster.ca (X.L.); wangz338mcmaster.ca (Z.W.)
                [2 ]Department of Engineering Physics, McMaster University, Hamilton, ON L8S4L7, Canada; sakibs@ 123456mcmaster.ca
                [3 ]Advanced Ceramics Corporation, 2536 Bristol Circle, Oakville, ON L6H5S1, Canada; rmathews@ 123456acc.ca
                Author notes
                [* ]Correspondence: zhitom@ 123456mcmaster.ca
                Article
                molecules-26-01974
                10.3390/molecules26071974
                8037898
                33807421
                41840908-8d17-4fb7-a1e8-1d79aa648964
                © 2021 by the authors.

                Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license ( https://creativecommons.org/licenses/by/4.0/).

                History
                : 24 February 2021
                : 26 March 2021
                Categories
                Article

                poly(methyl methacrylate),huntite,halloysite,hydrotalcite,hydroxide,coating

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