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Effects of incorporation of 2.5 and 5 wt% TiO(2) nanotubes on fracture toughness, flexural strength, and microhardness of denture base poly methyl methacrylate (PMMA)

PURPOSE: The aim of this preliminary study was to investigate, for the first time, the effects of addition of titania nanotubes (n-TiO(2)) to poly methyl methacrylate (PMMA) on mechanical properties of PMMA denture base. MATERIALS AND METHODS: TiO(2) nanotubes were prepared using alkaline hydrotherm...

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Autores principales: Abdulrazzaq Naji, Sahar, Behroozibakhsh, Marjan, Jafarzadeh Kashi, Tahereh Sadat, Eslami, Hossein, Masaeli, Reza, Mahgoli, Hosseinali, Tahriri, Mohammadreza, Ghavvami Lahiji, Mehrsima, Rakhshan, Vahid
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Korean Academy of Prosthodontics 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5917102/
https://www.ncbi.nlm.nih.gov/pubmed/29713431
http://dx.doi.org/10.4047/jap.2018.10.2.113
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author Abdulrazzaq Naji, Sahar
Behroozibakhsh, Marjan
Jafarzadeh Kashi, Tahereh Sadat
Eslami, Hossein
Masaeli, Reza
Mahgoli, Hosseinali
Tahriri, Mohammadreza
Ghavvami Lahiji, Mehrsima
Rakhshan, Vahid
author_facet Abdulrazzaq Naji, Sahar
Behroozibakhsh, Marjan
Jafarzadeh Kashi, Tahereh Sadat
Eslami, Hossein
Masaeli, Reza
Mahgoli, Hosseinali
Tahriri, Mohammadreza
Ghavvami Lahiji, Mehrsima
Rakhshan, Vahid
author_sort Abdulrazzaq Naji, Sahar
collection PubMed
description PURPOSE: The aim of this preliminary study was to investigate, for the first time, the effects of addition of titania nanotubes (n-TiO(2)) to poly methyl methacrylate (PMMA) on mechanical properties of PMMA denture base. MATERIALS AND METHODS: TiO(2) nanotubes were prepared using alkaline hydrothermal process. Obtained nanotubes were assessed using FESEM-EDX, XRD, and FT-IR. For 3 experiments of this study (fracture toughness, three-point bending flexural strength, and Vickers microhardness), 135 specimens were prepared according to ISO 20795-1:2013 (n of each experiment=45). For each experiment, PMMA was mixed with 0% (control), 2.5 wt%, and 5 wt% nanotubes. From each TiO(2):PMMA ratio, 15 specimens were fabricated for each experiment. Effects of n-TiO(2) addition on 3 mechanical properties were assessed using Pearson, ANOVA, and Tukey tests. RESULTS: SEM images of n-TiO(2) exhibited the presence of elongated tubular structures. The XRD pattern of synthesized n-TiO(2) represented the anatase crystal phase of TiO(2). Moderate to very strong significant positive correlations were observed between the concentration of n-TiO(2) and each of the 3 physicomechanical properties of PMMA (Pearson's P value ≤.001, correlation coefficient ranging between 0.5 and 0.9). Flexural strength and hardness values of specimens modified with both 2.5 and 5 wt% n-TiO(2) were significantly higher than those of control (P≤.001). Fracture toughness of samples reinforced with 5 wt% n-TiO(2) (but not those of 2.5% n-TiO(2)) was higher than control (P=.002). CONCLUSION: Titania nanotubes were successfully introduced for the first time as a means of enhancing the hardness, flexural strength, and fracture toughness of denture base PMMA.
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spelling pubmed-59171022018-04-30 Effects of incorporation of 2.5 and 5 wt% TiO(2) nanotubes on fracture toughness, flexural strength, and microhardness of denture base poly methyl methacrylate (PMMA) Abdulrazzaq Naji, Sahar Behroozibakhsh, Marjan Jafarzadeh Kashi, Tahereh Sadat Eslami, Hossein Masaeli, Reza Mahgoli, Hosseinali Tahriri, Mohammadreza Ghavvami Lahiji, Mehrsima Rakhshan, Vahid J Adv Prosthodont Original Article PURPOSE: The aim of this preliminary study was to investigate, for the first time, the effects of addition of titania nanotubes (n-TiO(2)) to poly methyl methacrylate (PMMA) on mechanical properties of PMMA denture base. MATERIALS AND METHODS: TiO(2) nanotubes were prepared using alkaline hydrothermal process. Obtained nanotubes were assessed using FESEM-EDX, XRD, and FT-IR. For 3 experiments of this study (fracture toughness, three-point bending flexural strength, and Vickers microhardness), 135 specimens were prepared according to ISO 20795-1:2013 (n of each experiment=45). For each experiment, PMMA was mixed with 0% (control), 2.5 wt%, and 5 wt% nanotubes. From each TiO(2):PMMA ratio, 15 specimens were fabricated for each experiment. Effects of n-TiO(2) addition on 3 mechanical properties were assessed using Pearson, ANOVA, and Tukey tests. RESULTS: SEM images of n-TiO(2) exhibited the presence of elongated tubular structures. The XRD pattern of synthesized n-TiO(2) represented the anatase crystal phase of TiO(2). Moderate to very strong significant positive correlations were observed between the concentration of n-TiO(2) and each of the 3 physicomechanical properties of PMMA (Pearson's P value ≤.001, correlation coefficient ranging between 0.5 and 0.9). Flexural strength and hardness values of specimens modified with both 2.5 and 5 wt% n-TiO(2) were significantly higher than those of control (P≤.001). Fracture toughness of samples reinforced with 5 wt% n-TiO(2) (but not those of 2.5% n-TiO(2)) was higher than control (P=.002). CONCLUSION: Titania nanotubes were successfully introduced for the first time as a means of enhancing the hardness, flexural strength, and fracture toughness of denture base PMMA. The Korean Academy of Prosthodontics 2018-04 2018-04-18 /pmc/articles/PMC5917102/ /pubmed/29713431 http://dx.doi.org/10.4047/jap.2018.10.2.113 Text en © 2018 The Korean Academy of Prosthodontics http://creativecommons.org/licenses/by-nc/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Abdulrazzaq Naji, Sahar
Behroozibakhsh, Marjan
Jafarzadeh Kashi, Tahereh Sadat
Eslami, Hossein
Masaeli, Reza
Mahgoli, Hosseinali
Tahriri, Mohammadreza
Ghavvami Lahiji, Mehrsima
Rakhshan, Vahid
Effects of incorporation of 2.5 and 5 wt% TiO(2) nanotubes on fracture toughness, flexural strength, and microhardness of denture base poly methyl methacrylate (PMMA)
title Effects of incorporation of 2.5 and 5 wt% TiO(2) nanotubes on fracture toughness, flexural strength, and microhardness of denture base poly methyl methacrylate (PMMA)
title_full Effects of incorporation of 2.5 and 5 wt% TiO(2) nanotubes on fracture toughness, flexural strength, and microhardness of denture base poly methyl methacrylate (PMMA)
title_fullStr Effects of incorporation of 2.5 and 5 wt% TiO(2) nanotubes on fracture toughness, flexural strength, and microhardness of denture base poly methyl methacrylate (PMMA)
title_full_unstemmed Effects of incorporation of 2.5 and 5 wt% TiO(2) nanotubes on fracture toughness, flexural strength, and microhardness of denture base poly methyl methacrylate (PMMA)
title_short Effects of incorporation of 2.5 and 5 wt% TiO(2) nanotubes on fracture toughness, flexural strength, and microhardness of denture base poly methyl methacrylate (PMMA)
title_sort effects of incorporation of 2.5 and 5 wt% tio(2) nanotubes on fracture toughness, flexural strength, and microhardness of denture base poly methyl methacrylate (pmma)
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5917102/
https://www.ncbi.nlm.nih.gov/pubmed/29713431
http://dx.doi.org/10.4047/jap.2018.10.2.113
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