Cargando…

An Approach to the Use of Glycol Alkoxysilane–Polysaccharide Hybrids in the Conservation of Historical Building Stones

Stone consolidants have been widely used to protect historical monuments. Consolidants and hydrophobic formulations based on the use of tetraethoxysilane (TEOS) and alkylalkoxysilanes as precursors have been widely applied, despite their lack of solubility in water and requirement to be applied in o...

Descripción completa

Detalles Bibliográficos
Autores principales: Meléndez-Zamudio, Miguel, Bravo-Flores, Ileana, Ramírez-Oliva, Eulalia, Guerra-Contreras, Antonio, Álvarez-Guzmán, Gilberto, Zárraga-Nuñez, Ramón, Villegas, Antonio, Martínez-Rosales, Merced, Cervantes, Jorge
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7916683/
https://www.ncbi.nlm.nih.gov/pubmed/33578888
http://dx.doi.org/10.3390/molecules26040938
_version_ 1783657534078320640
author Meléndez-Zamudio, Miguel
Bravo-Flores, Ileana
Ramírez-Oliva, Eulalia
Guerra-Contreras, Antonio
Álvarez-Guzmán, Gilberto
Zárraga-Nuñez, Ramón
Villegas, Antonio
Martínez-Rosales, Merced
Cervantes, Jorge
author_facet Meléndez-Zamudio, Miguel
Bravo-Flores, Ileana
Ramírez-Oliva, Eulalia
Guerra-Contreras, Antonio
Álvarez-Guzmán, Gilberto
Zárraga-Nuñez, Ramón
Villegas, Antonio
Martínez-Rosales, Merced
Cervantes, Jorge
author_sort Meléndez-Zamudio, Miguel
collection PubMed
description Stone consolidants have been widely used to protect historical monuments. Consolidants and hydrophobic formulations based on the use of tetraethoxysilane (TEOS) and alkylalkoxysilanes as precursors have been widely applied, despite their lack of solubility in water and requirement to be applied in organic media. In the search for a “greener” alternative based on silicon that has potential use in this field, the use of tetrakis(2-hydroxyethyl)silane (THEOS) and tris(2-hydroxyethyl)methyl silane (MeTHEOS) as precursors, due their high water solubility and stability, is proposed in this paper. It is already known that THEOS and MeTHEOS possess remarkable compatibility with different natural polysaccharides. The investigated approach uses the water-soluble silanes THEOS–chitosan and MeTHEOS–chitosan as a basis for obtaining hybrid consolidants and hydrophobic formulations for the conservation of siliceous and calcareous stones. In the case of calcareous systems, their incompatibility with alkoxysilanes is known and is expected to be solved by the developed hybrid consolidant. Their application in the conservation of building stones from historical and archeological sites from Guanajuato, México was studied. The evaluation of the consolidant and hydrophobic formulation treatment was mainly conducted by determining the mechanical properties and contact angle measurements with satisfactory results in terms of the performance and compatibility with the studied stones.
format Online
Article
Text
id pubmed-7916683
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-79166832021-03-01 An Approach to the Use of Glycol Alkoxysilane–Polysaccharide Hybrids in the Conservation of Historical Building Stones Meléndez-Zamudio, Miguel Bravo-Flores, Ileana Ramírez-Oliva, Eulalia Guerra-Contreras, Antonio Álvarez-Guzmán, Gilberto Zárraga-Nuñez, Ramón Villegas, Antonio Martínez-Rosales, Merced Cervantes, Jorge Molecules Article Stone consolidants have been widely used to protect historical monuments. Consolidants and hydrophobic formulations based on the use of tetraethoxysilane (TEOS) and alkylalkoxysilanes as precursors have been widely applied, despite their lack of solubility in water and requirement to be applied in organic media. In the search for a “greener” alternative based on silicon that has potential use in this field, the use of tetrakis(2-hydroxyethyl)silane (THEOS) and tris(2-hydroxyethyl)methyl silane (MeTHEOS) as precursors, due their high water solubility and stability, is proposed in this paper. It is already known that THEOS and MeTHEOS possess remarkable compatibility with different natural polysaccharides. The investigated approach uses the water-soluble silanes THEOS–chitosan and MeTHEOS–chitosan as a basis for obtaining hybrid consolidants and hydrophobic formulations for the conservation of siliceous and calcareous stones. In the case of calcareous systems, their incompatibility with alkoxysilanes is known and is expected to be solved by the developed hybrid consolidant. Their application in the conservation of building stones from historical and archeological sites from Guanajuato, México was studied. The evaluation of the consolidant and hydrophobic formulation treatment was mainly conducted by determining the mechanical properties and contact angle measurements with satisfactory results in terms of the performance and compatibility with the studied stones. MDPI 2021-02-10 /pmc/articles/PMC7916683/ /pubmed/33578888 http://dx.doi.org/10.3390/molecules26040938 Text en © 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Meléndez-Zamudio, Miguel
Bravo-Flores, Ileana
Ramírez-Oliva, Eulalia
Guerra-Contreras, Antonio
Álvarez-Guzmán, Gilberto
Zárraga-Nuñez, Ramón
Villegas, Antonio
Martínez-Rosales, Merced
Cervantes, Jorge
An Approach to the Use of Glycol Alkoxysilane–Polysaccharide Hybrids in the Conservation of Historical Building Stones
title An Approach to the Use of Glycol Alkoxysilane–Polysaccharide Hybrids in the Conservation of Historical Building Stones
title_full An Approach to the Use of Glycol Alkoxysilane–Polysaccharide Hybrids in the Conservation of Historical Building Stones
title_fullStr An Approach to the Use of Glycol Alkoxysilane–Polysaccharide Hybrids in the Conservation of Historical Building Stones
title_full_unstemmed An Approach to the Use of Glycol Alkoxysilane–Polysaccharide Hybrids in the Conservation of Historical Building Stones
title_short An Approach to the Use of Glycol Alkoxysilane–Polysaccharide Hybrids in the Conservation of Historical Building Stones
title_sort approach to the use of glycol alkoxysilane–polysaccharide hybrids in the conservation of historical building stones
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7916683/
https://www.ncbi.nlm.nih.gov/pubmed/33578888
http://dx.doi.org/10.3390/molecules26040938
work_keys_str_mv AT melendezzamudiomiguel anapproachtotheuseofglycolalkoxysilanepolysaccharidehybridsintheconservationofhistoricalbuildingstones
AT bravofloresileana anapproachtotheuseofglycolalkoxysilanepolysaccharidehybridsintheconservationofhistoricalbuildingstones
AT ramirezolivaeulalia anapproachtotheuseofglycolalkoxysilanepolysaccharidehybridsintheconservationofhistoricalbuildingstones
AT guerracontrerasantonio anapproachtotheuseofglycolalkoxysilanepolysaccharidehybridsintheconservationofhistoricalbuildingstones
AT alvarezguzmangilberto anapproachtotheuseofglycolalkoxysilanepolysaccharidehybridsintheconservationofhistoricalbuildingstones
AT zarraganunezramon anapproachtotheuseofglycolalkoxysilanepolysaccharidehybridsintheconservationofhistoricalbuildingstones
AT villegasantonio anapproachtotheuseofglycolalkoxysilanepolysaccharidehybridsintheconservationofhistoricalbuildingstones
AT martinezrosalesmerced anapproachtotheuseofglycolalkoxysilanepolysaccharidehybridsintheconservationofhistoricalbuildingstones
AT cervantesjorge anapproachtotheuseofglycolalkoxysilanepolysaccharidehybridsintheconservationofhistoricalbuildingstones
AT melendezzamudiomiguel approachtotheuseofglycolalkoxysilanepolysaccharidehybridsintheconservationofhistoricalbuildingstones
AT bravofloresileana approachtotheuseofglycolalkoxysilanepolysaccharidehybridsintheconservationofhistoricalbuildingstones
AT ramirezolivaeulalia approachtotheuseofglycolalkoxysilanepolysaccharidehybridsintheconservationofhistoricalbuildingstones
AT guerracontrerasantonio approachtotheuseofglycolalkoxysilanepolysaccharidehybridsintheconservationofhistoricalbuildingstones
AT alvarezguzmangilberto approachtotheuseofglycolalkoxysilanepolysaccharidehybridsintheconservationofhistoricalbuildingstones
AT zarraganunezramon approachtotheuseofglycolalkoxysilanepolysaccharidehybridsintheconservationofhistoricalbuildingstones
AT villegasantonio approachtotheuseofglycolalkoxysilanepolysaccharidehybridsintheconservationofhistoricalbuildingstones
AT martinezrosalesmerced approachtotheuseofglycolalkoxysilanepolysaccharidehybridsintheconservationofhistoricalbuildingstones
AT cervantesjorge approachtotheuseofglycolalkoxysilanepolysaccharidehybridsintheconservationofhistoricalbuildingstones