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Efficient Photopolymerization of Dental Resin Composites Using the Photoluminescent Long Afterglow of Sr 2 MgSi 2 O 7 :Eu 2+ ,Dy 3 .

Zezhou HuJia XuYongsheng WangLingdan XuYangman YiBin LiuZhaofeng Wang
Published in: ACS omega (2023)
Dental curing light with blue emission acts as the excitation source for the photopolymerization of the dental composite resin to achieve dental repairing. However, the current repair methods still suffer from a low monomer conversion degree and incomplete resin curing. In this study, novel dental resin composites (DRCs) were prepared by combining Sr 2 MgSi 2 O 7 :Eu 2+ ,Dy 3+ (SMSED), a photoluminescent material with a blue long afterglow, and dental resin composites. The curing depth, double bond conversion, elastic modulus, compressive strength, water absorption and solubility, and cytotoxicity were investigated systematically. The results suggest that adding 1 wt % SMSED to dental resin composites can maximize the curing depth and double bond conversion rate of DRCs and reduce its water absorption capacity without affecting the mechanical properties and biological toxicity. This work explores the practical applications of SMSED in dental resin composites, which provides an important reference for further improving the effect of dental caries repair.
Keyphrases
  • oral health
  • reduced graphene oxide
  • single molecule
  • oxidative stress
  • optical coherence tomography
  • mass spectrometry
  • quantum dots
  • visible light
  • aqueous solution