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Self-Healing Materials Based on Disulfide Links

Macromolecules · 2011 · Vol. 44(8) · pp. 2536–2541
Judit CanadellHan GoossensBert Klumperman

Abstract

Autonomous healing of damage is a common phenomenon in living organisms but is hardly ever encountered in synthetic materials. Disulfide chemistry is used to introduce a self-healing ability in a covalently cross-linked rubber. Autonomous healing of a cut takes place at moderate temperatures and leads to full recovery of mechanical properties. This result is achieved by introducing disulfide groups in the network that are able to exchange, leading to renewal of cross-links across the damaged surfaces. The healing process can be repeated many times. The combination of their unique self-healing properties and applicability for a large variety of polymers makes this approach ideal for coatings.

Polymer composites and self-healingAdvanced Polymer Synthesis and CharacterizationAntimicrobial agents and applicationsSelf-healingDisulfide bondSelf-healing materialNatural rubberPolymerCovalent bondWound healingMaterials sciencePolymer scienceChemistry

Funding

  • National Research Foundation
  • Department of Science and Technology, Ministry of Science and Technology, India
Citations
963
FWCI
22.65
field-weighted impact
References
28
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100%
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References
Microcapsule induced toughening in a self-healing polymer composite
Journal of Materials Science · 2004 · 739 citations
Self-healing polymeric materials: A review of recent developments
Progress in Polymer Science · 2008 · 1,364 citations
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