Cargando…

The Many Faces of Graphene as Protection Barrier. Performance under Microbial Corrosion and Ni Allergy Conditions

In this work we present a study on the performance of CVD (chemical vapor deposition) graphene coatings grown and transferred on Ni as protection barriers under two scenarios that lead to unwanted metal ion release, microbial corrosion and allergy test conditions. These phenomena have a strong impac...

Descripción completa

Detalles Bibliográficos
Autores principales: Parra, Carolina, Montero-Silva, Francisco, Gentil, Dana, del Campo, Valeria, Henrique Rodrigues da Cunha, Thiago, Henríquez, Ricardo, Häberle, Patricio, Garín, Carolina, Ramírez, Cristian, Fuentes, Raúl, Flores, Marcos, Seeger, Michael
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5744341/
https://www.ncbi.nlm.nih.gov/pubmed/29292763
http://dx.doi.org/10.3390/ma10121406
_version_ 1783288726812622848
author Parra, Carolina
Montero-Silva, Francisco
Gentil, Dana
del Campo, Valeria
Henrique Rodrigues da Cunha, Thiago
Henríquez, Ricardo
Häberle, Patricio
Garín, Carolina
Ramírez, Cristian
Fuentes, Raúl
Flores, Marcos
Seeger, Michael
author_facet Parra, Carolina
Montero-Silva, Francisco
Gentil, Dana
del Campo, Valeria
Henrique Rodrigues da Cunha, Thiago
Henríquez, Ricardo
Häberle, Patricio
Garín, Carolina
Ramírez, Cristian
Fuentes, Raúl
Flores, Marcos
Seeger, Michael
author_sort Parra, Carolina
collection PubMed
description In this work we present a study on the performance of CVD (chemical vapor deposition) graphene coatings grown and transferred on Ni as protection barriers under two scenarios that lead to unwanted metal ion release, microbial corrosion and allergy test conditions. These phenomena have a strong impact in different fields considering nickel (or its alloys) is one of the most widely used metals in industrial and consumer products. Microbial corrosion costs represent fractions of national gross product in different developed countries, whereas Ni allergy is one of the most prevalent allergic conditions in the western world, affecting around 10% of the population. We found that grown graphene coatings act as a protective membrane in biological environments that decreases microbial corrosion of Ni and reduces release of Ni(2+) ions (source of Ni allergic contact hypersensitivity) when in contact with sweat. This performance seems not to be connected to the strong orbital hybridization that Ni and graphene interface present, indicating electron transfer might not be playing a main role in the robust response of this nanostructured system. The observed protection from biological environment can be understood in terms of graphene impermeability to transfer Ni(2+) ions, which is enhanced for few layers of graphene grown on Ni. We expect our work will provide a new route for application of graphene as a protection coating for metals in biological environments, where current strategies have shown short-term efficiency and have raised health concerns.
format Online
Article
Text
id pubmed-5744341
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-57443412017-12-31 The Many Faces of Graphene as Protection Barrier. Performance under Microbial Corrosion and Ni Allergy Conditions Parra, Carolina Montero-Silva, Francisco Gentil, Dana del Campo, Valeria Henrique Rodrigues da Cunha, Thiago Henríquez, Ricardo Häberle, Patricio Garín, Carolina Ramírez, Cristian Fuentes, Raúl Flores, Marcos Seeger, Michael Materials (Basel) Article In this work we present a study on the performance of CVD (chemical vapor deposition) graphene coatings grown and transferred on Ni as protection barriers under two scenarios that lead to unwanted metal ion release, microbial corrosion and allergy test conditions. These phenomena have a strong impact in different fields considering nickel (or its alloys) is one of the most widely used metals in industrial and consumer products. Microbial corrosion costs represent fractions of national gross product in different developed countries, whereas Ni allergy is one of the most prevalent allergic conditions in the western world, affecting around 10% of the population. We found that grown graphene coatings act as a protective membrane in biological environments that decreases microbial corrosion of Ni and reduces release of Ni(2+) ions (source of Ni allergic contact hypersensitivity) when in contact with sweat. This performance seems not to be connected to the strong orbital hybridization that Ni and graphene interface present, indicating electron transfer might not be playing a main role in the robust response of this nanostructured system. The observed protection from biological environment can be understood in terms of graphene impermeability to transfer Ni(2+) ions, which is enhanced for few layers of graphene grown on Ni. We expect our work will provide a new route for application of graphene as a protection coating for metals in biological environments, where current strategies have shown short-term efficiency and have raised health concerns. MDPI 2017-12-08 /pmc/articles/PMC5744341/ /pubmed/29292763 http://dx.doi.org/10.3390/ma10121406 Text en © 2017 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Parra, Carolina
Montero-Silva, Francisco
Gentil, Dana
del Campo, Valeria
Henrique Rodrigues da Cunha, Thiago
Henríquez, Ricardo
Häberle, Patricio
Garín, Carolina
Ramírez, Cristian
Fuentes, Raúl
Flores, Marcos
Seeger, Michael
The Many Faces of Graphene as Protection Barrier. Performance under Microbial Corrosion and Ni Allergy Conditions
title The Many Faces of Graphene as Protection Barrier. Performance under Microbial Corrosion and Ni Allergy Conditions
title_full The Many Faces of Graphene as Protection Barrier. Performance under Microbial Corrosion and Ni Allergy Conditions
title_fullStr The Many Faces of Graphene as Protection Barrier. Performance under Microbial Corrosion and Ni Allergy Conditions
title_full_unstemmed The Many Faces of Graphene as Protection Barrier. Performance under Microbial Corrosion and Ni Allergy Conditions
title_short The Many Faces of Graphene as Protection Barrier. Performance under Microbial Corrosion and Ni Allergy Conditions
title_sort many faces of graphene as protection barrier. performance under microbial corrosion and ni allergy conditions
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5744341/
https://www.ncbi.nlm.nih.gov/pubmed/29292763
http://dx.doi.org/10.3390/ma10121406
work_keys_str_mv AT parracarolina themanyfacesofgrapheneasprotectionbarrierperformanceundermicrobialcorrosionandniallergyconditions
AT monterosilvafrancisco themanyfacesofgrapheneasprotectionbarrierperformanceundermicrobialcorrosionandniallergyconditions
AT gentildana themanyfacesofgrapheneasprotectionbarrierperformanceundermicrobialcorrosionandniallergyconditions
AT delcampovaleria themanyfacesofgrapheneasprotectionbarrierperformanceundermicrobialcorrosionandniallergyconditions
AT henriquerodriguesdacunhathiago themanyfacesofgrapheneasprotectionbarrierperformanceundermicrobialcorrosionandniallergyconditions
AT henriquezricardo themanyfacesofgrapheneasprotectionbarrierperformanceundermicrobialcorrosionandniallergyconditions
AT haberlepatricio themanyfacesofgrapheneasprotectionbarrierperformanceundermicrobialcorrosionandniallergyconditions
AT garincarolina themanyfacesofgrapheneasprotectionbarrierperformanceundermicrobialcorrosionandniallergyconditions
AT ramirezcristian themanyfacesofgrapheneasprotectionbarrierperformanceundermicrobialcorrosionandniallergyconditions
AT fuentesraul themanyfacesofgrapheneasprotectionbarrierperformanceundermicrobialcorrosionandniallergyconditions
AT floresmarcos themanyfacesofgrapheneasprotectionbarrierperformanceundermicrobialcorrosionandniallergyconditions
AT seegermichael themanyfacesofgrapheneasprotectionbarrierperformanceundermicrobialcorrosionandniallergyconditions
AT parracarolina manyfacesofgrapheneasprotectionbarrierperformanceundermicrobialcorrosionandniallergyconditions
AT monterosilvafrancisco manyfacesofgrapheneasprotectionbarrierperformanceundermicrobialcorrosionandniallergyconditions
AT gentildana manyfacesofgrapheneasprotectionbarrierperformanceundermicrobialcorrosionandniallergyconditions
AT delcampovaleria manyfacesofgrapheneasprotectionbarrierperformanceundermicrobialcorrosionandniallergyconditions
AT henriquerodriguesdacunhathiago manyfacesofgrapheneasprotectionbarrierperformanceundermicrobialcorrosionandniallergyconditions
AT henriquezricardo manyfacesofgrapheneasprotectionbarrierperformanceundermicrobialcorrosionandniallergyconditions
AT haberlepatricio manyfacesofgrapheneasprotectionbarrierperformanceundermicrobialcorrosionandniallergyconditions
AT garincarolina manyfacesofgrapheneasprotectionbarrierperformanceundermicrobialcorrosionandniallergyconditions
AT ramirezcristian manyfacesofgrapheneasprotectionbarrierperformanceundermicrobialcorrosionandniallergyconditions
AT fuentesraul manyfacesofgrapheneasprotectionbarrierperformanceundermicrobialcorrosionandniallergyconditions
AT floresmarcos manyfacesofgrapheneasprotectionbarrierperformanceundermicrobialcorrosionandniallergyconditions
AT seegermichael manyfacesofgrapheneasprotectionbarrierperformanceundermicrobialcorrosionandniallergyconditions