Suspension Based on a Mixture of Titania-Silica-Functionalized Graphene Oxide for Surface Consolidation of Historical Andesite Stone and Mortar
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Published:2022-12-30
Issue:1-2
Volume:67
Page:55-77
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ISSN:0258-8730
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Container-title:Studia Universitatis Babeș-Bolyai Physica
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language:
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Short-container-title:Studia UBB Physica
Author:
Coteț Liviu CosminORCID, , Sălăgean C., Mihis Alin GrigORCID, Székely István-AttilaORCID, Tóth Zsejke-RékaORCID, Baia LucianORCID, Baia MonicaORCID, Olteanu Gabriela, Olteanu Iulian Daniel, Danciu VirginiaORCID, , , , , , , , , ,
Abstract
"Three-components suspension, based on a mixture of titania (TiO2)-silica (SiO2)-functionalized graphene oxide (GO) is prepared and used for surface consolidation of historical andesite stone and mortar. For comparison, mono- and bi-component suspensions are also involved in this study. In order to increase the attachment capacity of GO to substrate with silicon, GO functionalized with (3-aminopropyl) triethoxysilane (GO-APTES) was involved. Unmodified and modified by painting with prepared suspensions andesite and mortar samples were investigated by microscopy (Optic and SEM-EDX), XRD, FT-IR and Raman spectra before and after 6 months of exposure to ambient conditions. After investigation, even the amount of used consolidant suspension was low, the stability of the modified samples was found that remains constant and in a long time it is possibly to reach even a higher stability level. This approach provides the idea that the prepared suspension could be an interesting option to be involved in stone and mortar consolidation-restoration field. Keywords: titanium oxide, cultural heritage, functionalized graphene oxide, surface consolidation, historical stones, historical mortars. "
Publisher
Babes-Bolyai University
Reference53 articles.
1. "[1] L. Dei and B. Salvadori, "Nanotechnology in cultural heritage conservation: nanometric slaked lime saves architectonic and artistic surfaces from decay," J. Cult. Herit., vol. 7, no. 2, pp. 110-115, 2006, doi: 10.1016/j.culher.2006.02.001. 2. [2] A. L. Linsebigler, G. Lu, and J. T. Yates, "Photocatalysis on TiO2 Surfaces: Principles, Mechanisms, and Selected Results," Chem. Rev., vol. 95, no. 3, pp. 735-758, 1995, doi: 10.1021/cr00035a013. 3. [3] P. Munafò, G. B. Goffredo, and E. Quagliarini, "TiO2-based nanocoatings for preserving architectural stone surfaces: An overview," Constr. Build. Mater., vol. 84, pp. 201-218, 2015, doi: 10.1016/j.conbuildmat.2015.02.083. 4. [4] A. Sierra-Fernandez, L. S. Gomez-Villalba, M. E. Rabanal, and R. Fort, "New nanomaterials for applications in conservation and restoration of stony materials: A review," Mater. Constr., vol. 67, no. 325, 2017, doi: 10.3989/mc.2017.07616. 5. [5] R. Wang et al., "Light-induced amphiphilic surfaces [4]," Nature, vol. 388, no. 6641, pp. 431-432, 1997, doi: 10.1038/41233.
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