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Dental resin composites: A review on materials to product realizations

期刊

COMPOSITES PART B-ENGINEERING
卷 230, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.compositesb.2021.109495

关键词

Dental resin composites; Dental restorations; Polymer; Characterization; Caries

资金

  1. AusIndustry [CRCPSEVEN000013]
  2. ARC Training Centre for Automated Manu-facture of Advanced Composites - Commonwealth of Australia under the Australian Research Council's Industrial Transformation Research Program [IC160100040]
  3. SDI Ltd.

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Dental resin composites have advanced dentistry by preserving healthy tooth structure and providing natural aesthetic results; further developments aim to create novel materials with properties, functionalities, and structures similar to hard dental tissues.
Dental resin composites have revolutionized dental care and enabled minimally invasive dentistry to preserve healthy tooth structure and provide natural-appearing esthetic results; these materials are now good alternatives to metal and amalgam restorations. Nevertheless, dental composites are being further developed to enhance their long-term clinical performance and longevity. With a complete understanding of the various material characteristics and design strategies of dental composite systems, frontiers of dental restoration research can aim towards creating novel materials that can produce very similar properties, functionalities, and internal structures as hard dental tissues. In this review article, the authors present an overview of the synthesis of the advanced dental composite systems with the recent research and development fields over the last 5 years. This review also explores how to control and optimize the required properties of the composites, ideally to increase the longevity/ durability of restorations preventing recurrent caries. Research studies and commercial products are introduced to forecast the demands and trends of resin-based dental composites, in order to assist clinicians and researchers in optimal selection of materials to fulfill mechanical, physical, biological, and functional requirements.

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