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Recent Advances and Developments in Composite Dental Restorative Materials

Journal of Dental Research · 2010 · Vol. 90(4) · pp. 402–416
Neil B. CramerJeffrey W. StansburyChristopher N. Bowman

Abstract

Composite dental restorations represent a unique class of biomaterials with severe restrictions on biocompatibility, curing behavior, esthetics, and ultimate material properties. These materials are presently limited by shrinkage and polymerization-induced shrinkage stress, limited toughness, the presence of unreacted monomer that remains following the polymerization, and several other factors. Fortunately, these materials have been the focus of a great deal of research in recent years with the goal of improving restoration performance by changing the initiation system, monomers, and fillers and their coupling agents, and by developing novel polymerization strategies. Here, we review the general characteristics of the polymerization reaction and recent approaches that have been taken to improve composite restorative performance.

Dental materials and restorationsPhotopolymerization techniques and applicationsBone Tissue Engineering MaterialsShrinkagePolymerizationBiocompatibilityMaterials scienceDental compositeCuring (chemistry)ToughnessDental restorationComposite numberMonomer

MeSH terms

Biocompatible MaterialsComposite ResinsDental MaterialsDental Restoration, PermanentForecastingHumansStress, MechanicalSurface PropertiesChemical PhenomenaPhotochemical ProcessesPolymerization

Funding

  • National Science Foundation
  • National Institutes of Health
  • National Institute of Dental and Craniofacial Research
Citations
695
FWCI
19.06
field-weighted impact
References
173
Percentile
100%
vs. same field & year
Citations per year
References
Degradation, Fatigue, and Failure of Resin Dental Composite Materials
Journal of Dental Research · 2008 · 578 citations
Thiol–Ene Click Chemistry
Angewandte Chemie International Edition · 2010 · 4,026 citations
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