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Y-TZP Physicochemical Properties Conditioned with ZrO(2) and SiO(2) Nanofilms and Bond Strength to Dual Resin Cement

Commercial Yttria-tetragonal zirconia polycrystalline (Y-TZP) was subjected to surface treatments, and the bond strength of dual resin cement to Y-TZP and failure modes were evaluated. Disks (12 mm × 2 mm), cylinders (7 mm × 3.3 mm), and bars (25 mm × 5 mm × 2 mm) were milled from Y-TZP CAD-CAM bloc...

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Autores principales: Ribeiro, Ricardo Faria, Oliveira, Danilo Flamini, Tovani, Camila Bussola, Ramos, Ana Paula, Borges, Ana Flavia Sanches, Faria, Adriana Claudia Lapria, de Almeida, Rossana Pereira, Rodrigues, Renata Cristina Silveira
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9694964/
https://www.ncbi.nlm.nih.gov/pubmed/36431390
http://dx.doi.org/10.3390/ma15227905
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author Ribeiro, Ricardo Faria
Oliveira, Danilo Flamini
Tovani, Camila Bussola
Ramos, Ana Paula
Borges, Ana Flavia Sanches
Faria, Adriana Claudia Lapria
de Almeida, Rossana Pereira
Rodrigues, Renata Cristina Silveira
author_facet Ribeiro, Ricardo Faria
Oliveira, Danilo Flamini
Tovani, Camila Bussola
Ramos, Ana Paula
Borges, Ana Flavia Sanches
Faria, Adriana Claudia Lapria
de Almeida, Rossana Pereira
Rodrigues, Renata Cristina Silveira
author_sort Ribeiro, Ricardo Faria
collection PubMed
description Commercial Yttria-tetragonal zirconia polycrystalline (Y-TZP) was subjected to surface treatments, and the bond strength of dual resin cement to Y-TZP and failure modes were evaluated. Disks (12 mm × 2 mm), cylinders (7 mm × 3.3 mm), and bars (25 mm × 5 mm × 2 mm) were milled from Y-TZP CAD-CAM blocks, divided into seven groups, and subjected to different surface treatments; silicatization was used as control. On the basis of the literature, this study evaluated modifications with films containing SiO(2) nanoparticles and silane; SiO(2)+ZrO(2)—SiO(2) (50%) and ZrO(2) (50%) nanoparticles, SiO(2)+ZrO(2/)Silane-SiO(2) (50%) and ZrO(2) (50%) nanoparticles, and silane. Specimens were analyzed by wettability (n = 3), surface free energy (n = 3), X-ray diffraction (n = 1), Fourier transform infrared spectroscopy (FTIR) (n = 1), roughness (n = 5), shear bond test (n = 10), and dynamic modulus (n = 3). Specimens treated with hydrofluoric acid—HF 40% presented significantly higher contact angle and lowest surface free energy (p < 0.05). The SiO(2)/Silane presented crystalline SiO(2) on the surface. The surface roughness was significantly higher for groups treated with nanofilms (p < 0.05). Shear bond strength was significantly higher for silicatization, HF 40%/silicatization, SiO(2)/Silane, and SiO(2)+ZrO(2)/Silane groups. The proposed treatments with nanofilms had potentially good results without prejudice to the physicochemical characteristics of zirconia. Generally, groups that underwent silica surface deposition and silanization had better bond strength (p < 0.005).
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spelling pubmed-96949642022-11-26 Y-TZP Physicochemical Properties Conditioned with ZrO(2) and SiO(2) Nanofilms and Bond Strength to Dual Resin Cement Ribeiro, Ricardo Faria Oliveira, Danilo Flamini Tovani, Camila Bussola Ramos, Ana Paula Borges, Ana Flavia Sanches Faria, Adriana Claudia Lapria de Almeida, Rossana Pereira Rodrigues, Renata Cristina Silveira Materials (Basel) Article Commercial Yttria-tetragonal zirconia polycrystalline (Y-TZP) was subjected to surface treatments, and the bond strength of dual resin cement to Y-TZP and failure modes were evaluated. Disks (12 mm × 2 mm), cylinders (7 mm × 3.3 mm), and bars (25 mm × 5 mm × 2 mm) were milled from Y-TZP CAD-CAM blocks, divided into seven groups, and subjected to different surface treatments; silicatization was used as control. On the basis of the literature, this study evaluated modifications with films containing SiO(2) nanoparticles and silane; SiO(2)+ZrO(2)—SiO(2) (50%) and ZrO(2) (50%) nanoparticles, SiO(2)+ZrO(2/)Silane-SiO(2) (50%) and ZrO(2) (50%) nanoparticles, and silane. Specimens were analyzed by wettability (n = 3), surface free energy (n = 3), X-ray diffraction (n = 1), Fourier transform infrared spectroscopy (FTIR) (n = 1), roughness (n = 5), shear bond test (n = 10), and dynamic modulus (n = 3). Specimens treated with hydrofluoric acid—HF 40% presented significantly higher contact angle and lowest surface free energy (p < 0.05). The SiO(2)/Silane presented crystalline SiO(2) on the surface. The surface roughness was significantly higher for groups treated with nanofilms (p < 0.05). Shear bond strength was significantly higher for silicatization, HF 40%/silicatization, SiO(2)/Silane, and SiO(2)+ZrO(2)/Silane groups. The proposed treatments with nanofilms had potentially good results without prejudice to the physicochemical characteristics of zirconia. Generally, groups that underwent silica surface deposition and silanization had better bond strength (p < 0.005). MDPI 2022-11-09 /pmc/articles/PMC9694964/ /pubmed/36431390 http://dx.doi.org/10.3390/ma15227905 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ribeiro, Ricardo Faria
Oliveira, Danilo Flamini
Tovani, Camila Bussola
Ramos, Ana Paula
Borges, Ana Flavia Sanches
Faria, Adriana Claudia Lapria
de Almeida, Rossana Pereira
Rodrigues, Renata Cristina Silveira
Y-TZP Physicochemical Properties Conditioned with ZrO(2) and SiO(2) Nanofilms and Bond Strength to Dual Resin Cement
title Y-TZP Physicochemical Properties Conditioned with ZrO(2) and SiO(2) Nanofilms and Bond Strength to Dual Resin Cement
title_full Y-TZP Physicochemical Properties Conditioned with ZrO(2) and SiO(2) Nanofilms and Bond Strength to Dual Resin Cement
title_fullStr Y-TZP Physicochemical Properties Conditioned with ZrO(2) and SiO(2) Nanofilms and Bond Strength to Dual Resin Cement
title_full_unstemmed Y-TZP Physicochemical Properties Conditioned with ZrO(2) and SiO(2) Nanofilms and Bond Strength to Dual Resin Cement
title_short Y-TZP Physicochemical Properties Conditioned with ZrO(2) and SiO(2) Nanofilms and Bond Strength to Dual Resin Cement
title_sort y-tzp physicochemical properties conditioned with zro(2) and sio(2) nanofilms and bond strength to dual resin cement
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9694964/
https://www.ncbi.nlm.nih.gov/pubmed/36431390
http://dx.doi.org/10.3390/ma15227905
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