reviewSoft MatterOct 29, 2013GREEN OA

Multi-scale multi-mechanism design of tough hydrogels: building dissipation into stretchy networks

Duke University

PubMed
Indexed incrossrefpubmed

Abstract

As swollen polymer networks in water, hydrogels are usually brittle. However, hydrogels with high toughness play critical roles in many plant and animal tissues as well as in diverse engineering applications. Here we review the intrinsic mechanisms of a wide variety of tough hydrogels developed over the past few decades. We show that tough hydrogels generally possess mechanisms to dissipate substantial mechanical energy but still maintain high elasticity under deformation. The integrations and interactions of different mechanisms for dissipating energy and maintaining elasticity are essential to the design of tough hydrogels. A matrix that combines various mechanisms is constructed for the first time to guide…

Citation impact

1,211
total citations
FWCI
17.25
Percentile
100%
References
208
Citations per year

Authors

1

Topics & keywords

Keywords
  • Self-healing hydrogels
  • Toughness
  • Materials science
  • Brittleness
  • Design elements and principles
  • Material Design
  • Nanotechnology
  • Dissipation
UN Sustainable Development Goals
  • Affordable and clean energy
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