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Metal-Free Antibacterial Additives Based on Graphene Materials and Salicylic Acid: From the Bench to Fabric Applications

[Image: see text] The custom functionalization of a graphene surface allows access to engineered nanomaterials with improved colloidal stability and tailored specific properties, which are available to be employed in a wide range of applications ranging from materials to life science. The high surfa...

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Autores principales: Biagiotti, Giacomo, Salvatore, Annalisa, Toniolo, Gianluca, Caselli, Lucrezia, Di Vito, Maura, Cacaci, Margherita, Contiero, Luca, Gori, Tommaso, Maggini, Michele, Sanguinetti, Maurizio, Berti, Debora, Bugli, Francesca, Richichi, Barbara, Cicchi, Stefano
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2021
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8289172/
https://www.ncbi.nlm.nih.gov/pubmed/34038082
http://dx.doi.org/10.1021/acsami.1c02330
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author Biagiotti, Giacomo
Salvatore, Annalisa
Toniolo, Gianluca
Caselli, Lucrezia
Di Vito, Maura
Cacaci, Margherita
Contiero, Luca
Gori, Tommaso
Maggini, Michele
Sanguinetti, Maurizio
Berti, Debora
Bugli, Francesca
Richichi, Barbara
Cicchi, Stefano
author_facet Biagiotti, Giacomo
Salvatore, Annalisa
Toniolo, Gianluca
Caselli, Lucrezia
Di Vito, Maura
Cacaci, Margherita
Contiero, Luca
Gori, Tommaso
Maggini, Michele
Sanguinetti, Maurizio
Berti, Debora
Bugli, Francesca
Richichi, Barbara
Cicchi, Stefano
author_sort Biagiotti, Giacomo
collection PubMed
description [Image: see text] The custom functionalization of a graphene surface allows access to engineered nanomaterials with improved colloidal stability and tailored specific properties, which are available to be employed in a wide range of applications ranging from materials to life science. The high surface area and their intrinsic physical and biological properties make reduced graphene oxide and graphene oxide unique materials for the custom functionalization with bioactive molecules by exploiting different surface chemistries. In this work, preparation (on the gram scale) of reduced graphene oxide and graphene oxide derivatives functionalized with the well-known antibacterial agent salicylic acid is reported. The salicylic acid functionalities offered a stable colloidal dispersion and, in addition, homogeneous absorption on a sample of textile manufacture (i.e., cotton fabrics), as shown by a Raman spectroscopy study, thus providing nanoengineered materials with significant antibacterial activity toward different strains of microorganisms. Surprisingly, graphene surface functionalization also ensured resistance to detergent washing treatments as verified on a model system using the quartz crystal microbalance technique. Therefore, our findings paved the way for the development of antibacterial additives for cotton fabrics in the absence of metal components, thus limiting undesirable side effects.
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spelling pubmed-82891722021-07-20 Metal-Free Antibacterial Additives Based on Graphene Materials and Salicylic Acid: From the Bench to Fabric Applications Biagiotti, Giacomo Salvatore, Annalisa Toniolo, Gianluca Caselli, Lucrezia Di Vito, Maura Cacaci, Margherita Contiero, Luca Gori, Tommaso Maggini, Michele Sanguinetti, Maurizio Berti, Debora Bugli, Francesca Richichi, Barbara Cicchi, Stefano ACS Appl Mater Interfaces [Image: see text] The custom functionalization of a graphene surface allows access to engineered nanomaterials with improved colloidal stability and tailored specific properties, which are available to be employed in a wide range of applications ranging from materials to life science. The high surface area and their intrinsic physical and biological properties make reduced graphene oxide and graphene oxide unique materials for the custom functionalization with bioactive molecules by exploiting different surface chemistries. In this work, preparation (on the gram scale) of reduced graphene oxide and graphene oxide derivatives functionalized with the well-known antibacterial agent salicylic acid is reported. The salicylic acid functionalities offered a stable colloidal dispersion and, in addition, homogeneous absorption on a sample of textile manufacture (i.e., cotton fabrics), as shown by a Raman spectroscopy study, thus providing nanoengineered materials with significant antibacterial activity toward different strains of microorganisms. Surprisingly, graphene surface functionalization also ensured resistance to detergent washing treatments as verified on a model system using the quartz crystal microbalance technique. Therefore, our findings paved the way for the development of antibacterial additives for cotton fabrics in the absence of metal components, thus limiting undesirable side effects. American Chemical Society 2021-05-26 2021-06-09 /pmc/articles/PMC8289172/ /pubmed/34038082 http://dx.doi.org/10.1021/acsami.1c02330 Text en © 2021 The Authors. Published by American Chemical Society Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Biagiotti, Giacomo
Salvatore, Annalisa
Toniolo, Gianluca
Caselli, Lucrezia
Di Vito, Maura
Cacaci, Margherita
Contiero, Luca
Gori, Tommaso
Maggini, Michele
Sanguinetti, Maurizio
Berti, Debora
Bugli, Francesca
Richichi, Barbara
Cicchi, Stefano
Metal-Free Antibacterial Additives Based on Graphene Materials and Salicylic Acid: From the Bench to Fabric Applications
title Metal-Free Antibacterial Additives Based on Graphene Materials and Salicylic Acid: From the Bench to Fabric Applications
title_full Metal-Free Antibacterial Additives Based on Graphene Materials and Salicylic Acid: From the Bench to Fabric Applications
title_fullStr Metal-Free Antibacterial Additives Based on Graphene Materials and Salicylic Acid: From the Bench to Fabric Applications
title_full_unstemmed Metal-Free Antibacterial Additives Based on Graphene Materials and Salicylic Acid: From the Bench to Fabric Applications
title_short Metal-Free Antibacterial Additives Based on Graphene Materials and Salicylic Acid: From the Bench to Fabric Applications
title_sort metal-free antibacterial additives based on graphene materials and salicylic acid: from the bench to fabric applications
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8289172/
https://www.ncbi.nlm.nih.gov/pubmed/34038082
http://dx.doi.org/10.1021/acsami.1c02330
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