Engineering a new generation of thermoset self-healing polymers based on intrinsic approaches.

JADA Found Sci

Division of Biomaterials and Biomechanics, Restorative Dentistry Department, Oregon Health & Science University, Portland, OR.

Published: August 2022

AI Article Synopsis

  • Thermosetting polymers with self-healing capabilities are gaining attention in various fields, including dentistry, due to their ability to extend the lifespan of restorations affected by stress and microcracks.
  • The review categorizes different intrinsic strategies for creating self-repairing polymers, which often involve incorporating reversible chemical bonds into their structure.
  • Despite their potential, intrinsic self-healing approaches are still largely unexplored in dentistry, though there are promising chemical methods from other disciplines that could be applied.

Article Abstract

Objectives: The development of thermosetting polymers with autonomic reparability has become an important research topic since it has the potential to benefit several fields such as biomaterials, tissue engineering, paint and coating technologies, electronics, and soft robotics. In dentistry, the development of restorative materials capable of inhibiting the propagation of microcracks caused by masticatory forces and thermal stress may represent a crucial expansion of the limited clinical lifespan of dental restorations, which is a pressing challenge. Biological systems have inspired the underlying concepts and designs of synthetic polymeric self-healing systems, and different strategies have been used to impart autonomous repair capability in polymers. In this review, the most relevant intrinsic strategies are categorized based on the reaction mechanisms. In general, these strategies rely on the incorporation of latent functionalities capable of undergoing reversible chemical bonds within the polymeric structure (chemically or compositionally tuned).

Search Strategy: The searches were conducted in the databases Scopus, PubMed, and Google Scholar and limited to articles that were written in English and published during the last ten years. A few additional articles were included by complementing the database searches with manual review of the reference lists.

Overall Conclusions: Although intrinsic approaches remain underexplored in dentistry, a wide variety of elegant chemistries with tremendous translational potential employed in other fields to promote autonomic repair are highlighted in this review.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9885846PMC
http://dx.doi.org/10.1016/j.jfscie.2022.100014DOI Listing

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