
Dental resin composites (DRCs) are commonly used for dental restorations, requiring superior properties to withstand the oral environment. The interaction between fillers and resins at their interface significantly influences the physical, chemical, and biological characteristics and the longevity of DRCs. Researchers have explored various chemical and physical modification techniques to enhance this interface, focusing on achieving physical micromechanical interlocking. This approach involves modifying the morphology and structure of fillers to create interlocking structures. This review provides an introduction to DRC composition and development, examines the methods used to modify the filler/resin interface, emphasizes the significance of micromechanical interlocking, and concludes by discussing current challenges and potential future developments.
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