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1.
Nanomaterials (Basel) ; 9(10)2019 Sep 29.
Artigo em Inglês | MEDLINE | ID: mdl-31569589

RESUMO

The objective of this paper is to review the current knowledge on the development of nanostructured zirconia-based ceramics and composites suitable for application in dentistry. Isi Web of Science, Science Direct, Scientific.net databases, and Google were searched electronically for the period of 1980 to the present, matching the keywords "nano" with the keywords: "Zirconia, ZrO2, Y-TZP, and dental, dentistry". A total of 74 papers were found, with the majority coming from Asia, indicating a more active scientific interest on the topic in this geographic area, followed by Europe, South America, and North America. The research shows, even though the scientific activity on nanostructured ceramics was intense in the last fifteen years, the development of fully dense zirconia-based nanoceramics is yet at an initial stage, most of all from the point of view of the clinical applications. It has been demonstrated that nanostructured ceramics can show improved properties because of the reduction of the grain size to the nanoscale. This is also true for zirconia-based nanoceramics, where some improvements in mechanical, optical, as well as resistance in low-temperature degradation have been observed. Potential applications of this class of material in the dental field are discussed, summarizing the results of the latest scientific research.

2.
J Prosthet Dent ; 110(6): 510-4, 2013 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-24182897

RESUMO

STATEMENT OF PROBLEM: Because airborne-particle abrasion is an efficient method of improving the bond at the zirconia-cement interface, understanding its effect on the strength of yttria-stabilized tetragonal zirconia polycrystal is important. PURPOSE: The purpose of this study was to evaluate the effect of the particle size used for airborne-particle abrasion on the flexural strength and phase transformation of a commercially available yttria-stabilized tetragonal zirconia polycrystal ceramic. MATERIAL AND METHODS: For both flexural strength (20.0 × 4.0 × 1.2 mm) (n=14) and phase transformation (14.0-mm diameter × 1.3-mm thickness) (n=4), the zirconia specimens were made from Lava, and their surfaces were treated in the following ways: as-sintered (control); with 50-µm aluminum oxide (Al2O3) particles; with 120-µm Al2O3 particles; with 250-µm Al2O3 particles; with 30-µm silica-modified Al2O3 particles (Cojet Sand); with 120-µm Al2O3 particles, followed by 110-µm silica-modified Al2O3 particles (Rocatec Plus); and with Rocatec Plus. The phase transformation (%) was assessed by x-ray diffraction analysis. The 3-point flexural strength test was conducted in artificial saliva at 37°C in a mechanical testing machine. The data were analyzed by 1-way ANOVA and the Tukey honestly significant difference post hoc test (α=.05). RESULTS: Except for the Cojet Sand group, which exhibited statistically similar flexural strength to that of the as-sintered group and for the group abraded with 250-µm Al2O3 particles, which presented the lowest strength, airborne-particle abrasion with the other particle sizes provided the highest values, with no significant difference among them. The as-sintered specimens presented no monoclinic phase. The groups abraded with smaller particles (30 µm and 50 µm) and those treated with the larger ones (110 µm and/or 120 µm particles and 250 µm) exhibited percentages of monoclinic phase that varied from 4% to 5% and from 8.7% to 10%. CONCLUSIONS: Except for abrasion with Cojet Sand, depending on the particle size, zirconia exhibited an increase or a decrease in its flexural strength. Airborne-particle abrasion promoted phase transformation (tetragonal to monoclinic), and the percentage of monoclinic phase varied according to the particle size.


Assuntos
Corrosão Dentária/métodos , Materiais Dentários/química , Ítrio/química , Zircônio/química , Óxido de Alumínio/química , Fenômenos Químicos , Análise do Estresse Dentário/instrumentação , Humanos , Teste de Materiais , Tamanho da Partícula , Maleabilidade , Saliva Artificial/química , Dióxido de Silício/química , Estresse Mecânico , Propriedades de Superfície , Temperatura , Difração de Raios X/instrumentação
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