Zirconia Nanoparticles as Reinforcing Agents for Contemporary Dental Luting Cements: Physicochemical Properties and Shear Bond Strength to Monolithic Zirconia

Int J Mol Sci. 2023 Jan 20;24(3):2067. doi: 10.3390/ijms24032067.

Abstract

Nanofillers in resin materials can improve their mechanical and physicochemical properties. The present work investigated the effects of zirconia nanoparticles (NPs) as fillers in commercial dental luting cements. Two dual-cured self-adhesive composites and one resin modified glass ionomer (RMGI) luting cement were employed. Film thickness (FT), flexural strength (FS), water sorption (Wsp), and shear bond strength (SBS) to monolithic zirconia were evaluated according to ISO 16506:2017 and ISO 9917-2:2017, whereas polymerization progress was evaluated with FTIR. Photopolymerization resulted in double the values of DC%. The addition of 1% wt NPs does not significantly influence polymerization, however, greater amounts do not promote crosslinking. The sorption behavior and the mechanical performance of the composites were not affected, while the film thickness increased in all luting agents, within the acceptable limits. Thermocycling (TC) resulted in a deteriorating effect on all composites. The addition of NPs significantly improved the mechanical properties of the RMGI cement only, without negatively affecting the other cements. Adhesive primer increased the initial SBS significantly, however after TC, its application was only beneficial for RMGI. The MDP containing luting cement showed higher SBS compared to the RMGI and 4-META luting agents. Future commercial adhesives containing zirconia nanoparticles could provide cements with improved mechanical properties.

Keywords: FTIR; bond strength; dual-curing; film thickness; flexural strength; luting cements; thermocycling; water sorption; zirconia nanoparticles.

MeSH terms

  • Dental Bonding*
  • Dental Cements
  • Glass Ionomer Cements / chemistry
  • Materials Testing
  • Resin Cements / chemistry
  • Resins, Plant
  • Shear Strength
  • Surface Properties
  • Zirconium* / chemistry

Substances

  • zirconium oxide
  • Zirconium
  • Resins, Plant
  • Glass Ionomer Cements
  • glass ionomer
  • Resin Cements
  • Dental Cements

Grants and funding