Highly-translucent, strong and aging-resistant 3Y-TZP ceramics for dental restoration by grain boundary segregation

[Display omitted] Latest trends in dental restorative ceramics involve the development of full-contour 3Y-TZP ceramics which can avoid chipping of veneering porcelains. Among the challenges are the low translucency and the hydrothermal stability of 3Y-TZP ceramics. In this work, different trivalent...

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Veröffentlicht in:Acta biomaterialia 2015-04, Vol.16, p.215-222
Hauptverfasser: Zhang, Fei, Vanmeensel, Kim, Batuk, Maria, Hadermann, Joke, Inokoshi, Masanao, Van Meerbeek, Bart, Naert, Ignace, Vleugels, Jef
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Sprache:eng
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Zusammenfassung:[Display omitted] Latest trends in dental restorative ceramics involve the development of full-contour 3Y-TZP ceramics which can avoid chipping of veneering porcelains. Among the challenges are the low translucency and the hydrothermal stability of 3Y-TZP ceramics. In this work, different trivalent oxides (Al2O3, Sc2O3, Nd2O3 and La2O3) were selected to dope 3Y-TZP ceramics. Results show that dopant segregation was a key factor to design hydrothermally stable and high-translucent 3Y-TZP ceramics and the cation dopant radius could be used as a controlling parameter. A large trivalent dopant, oversized as compared to Zr4+, exhibiting strong segregation at the ZrO2 grain boundary was preferred. The introduction of 0.2mol% La2O3 in conventional 0.1–0.25wt.% Al2O3-doped 3Y-TZP resulted in an excellent combination of high translucency and superior hydrothermal stability, while retaining excellent mechanical properties.
ISSN:1742-7061
1878-7568
DOI:10.1016/j.actbio.2015.01.037