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      Incorporação de óxido de grafeno em argamassa de revestimento: uma visão sustentável Translated title: Incorporation of graphene oxide in coating mortar: a sustainable view

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          Abstract

          Resumo A nanotecnologia tem avançado muito nos últimos anos, promovendo o surgimento de novos materiais, como o grafite e suas composições, como óxido de grafeno e grafeno. Diante disso, este estudo avaliou física, química e mecanicamente argamassa de revestimento com incorporação de óxidode grafeno nas proporções de 0,04% e 0,1%. A adição provocou mínimas interferências nas propriedades físicas das argamassas contendo óxido de grafeno quando comparada à argamassa de referência, não comprometendo a argamassa final. Porém, com relação às propriedades mecânicas houve um aumento na resistência à compressão nas argamassas modificadas, quando comparadas à argamassa de referência, e a função desejabilidade pôde determinar que, com 82,45% de otimização, a proporção de 0,1% contribuiu para as melhores condições para a resistência à compressão e à tração na flexão das argamassas modificadas. As análises de superfície também colaboraram com a comprovação desse fato, pois é possível visualizar que quando há melhoria na dispersão do óxido de grafeno nas matrizes cimentícias, ocorre melhoria nas propriedades mecânicas.

          Translated abstract

          Abstract Nanotechnology has greatly developed in recent years, promoting the emergence of new materials, such as graphite and its compositions as graphene oxide and graphene. This study performs a physical, chemical and mechanical evaluation of a coating mortar with graphene oxide incorporation at the proportions of 0.04% and 0.1%. The addition caused minimal interference in the physical properties of graphene oxide-containing mortars, when compared to the reference mortar, without compromising the final mortar. However, with regards to the mechanical properties, there was an increase in the compressive strength of modified mortars when compared to the reference mortar and the desirability function determined that with 82.45% of optimisation, the proportion of 0.1% contributed to improve the conditions for compressive strength and flexural tensile strength of modified mortars. The image analyses also corroborated with this fact, as it was possible to see that when there was better dispersion of graphene oxide on the cementitious matrices, the mechanical properties also improved.

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          Most cited references28

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          The chemical and structural analysis of graphene oxide with different degrees of oxidation

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            Graphene oxide and reduced graphene oxide studied by the XRD, TEM and electron spectroscopy methods

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              Nano reinforced cement and concrete composites and new perspective from graphene oxide

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                Author and article information

                Contributors
                Role: ND
                Role: ND
                Role: ND
                Role: ND
                Role: ND
                Role: ND
                Journal
                ac
                Ambiente Construído
                Ambient. constr.
                Associação Nacional de Tecnologia do Ambiente Construído - ANTAC (Porto Alegre, RS, Brazil )
                1415-8876
                1678-8621
                March 2020
                : 20
                : 1
                : 297-312
                Affiliations
                [6] Maringá PR orgnameUniCesumar Brasil
                [5] Maringá Paraná orgnameUniversidade Estadual de Maringá Brazil
                [4] Maringá Paraná orgnameUniversidade Estadual de Maringá Brazil
                [2] Maringá PR orgnameUniCesumar Brasil
                [3] Maringá PR orgnameUniCesumar Brasil
                [1] PR orgnameUniversidade Positivo Campo Mourão Brasil
                Article
                S1678-86212020000100297 S1678-8621(20)02000100297
                10.1590/s1678-86212020000100375
                9bdc0608-7a06-4000-ba1a-be9985eaaaf8

                This work is licensed under a Creative Commons Attribution 4.0 International License.

                History
                : 07 July 2019
                : 08 January 2019
                Page count
                Figures: 0, Tables: 0, Equations: 0, References: 46, Pages: 16
                Product

                SciELO Brazil

                Categories
                Artigos

                Construção civil,Óxido de grafeno,Propriedades mecânicas,Nanomateriais de carbono,Mechanical properties.,Construction,Argamassa,Graphene oxide,Mortar,Carbon nanomaterials

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