The Kirigami approach is an effective way to realize controllable deformation of intelligent materials via introducing cuts into bulk materials. For materials ranging from ordinary stiff materials such as glass, ceramics, and metals to soft materials, including ordinary hydrogels and elastomers, all of them are all sensitive to the presence of cuts, which usually act as defects to deteriorate mechanical properties. Herein, we study the influence of the cuts on the mechanical properties by introducing “dispersed macro-scale cuts” into a model tough double network (DN) hydrogel (named D-cut gel), which consists of a rigid and brittle first network and a ductile stretchable second network. For comparison, DN gels with “continuous cuts” having ...
Smart materials with self-growing and tailorable mechanical strength have wide-range potential appli...
Hydrogels are major components of the human body. To replace a damaged hydrogel in the body or suppo...
As swollen polymer networks in water, hydrogels are usually brittle. However, hydrogels with high to...
Double network hydrogels (DN gels) exhibit extraordinarily high strength and toughness by interplay ...
AbstractThe double network (DN) technique, developed by authors’ group, provides an innovative and u...
Double network (DN) gels, consisting of a brittle first and flexible second network, have been known...
The double network concept, based on the fracture of sacrificial bonds, has been revolutionary towar...
Systematic loading and unloading experiments, in uniaxial tension and uniaxial compression, have bee...
In this review we highlight new developments in tough hydrogel materials in terms of their enhanced ...
Double-network gels are a class of tough soft materials comprising two elastic networks with contras...
The high fracture energy of tough soft materials can be attributed to the large energy dissipation z...
Longer and stronger; stiff but not brittle Hydrogels are highly water-swoll...
Inspired by the toughening mechanism of double-network (DN) gels, tough hydrogel composites with a s...
Hydrogels are three dimensional macromolecular networks, characterized by soft-wet structure. The in...
Hydrogels’ applications are limited by their weak mechanical properties. The toughness, modulus, and...
Smart materials with self-growing and tailorable mechanical strength have wide-range potential appli...
Hydrogels are major components of the human body. To replace a damaged hydrogel in the body or suppo...
As swollen polymer networks in water, hydrogels are usually brittle. However, hydrogels with high to...
Double network hydrogels (DN gels) exhibit extraordinarily high strength and toughness by interplay ...
AbstractThe double network (DN) technique, developed by authors’ group, provides an innovative and u...
Double network (DN) gels, consisting of a brittle first and flexible second network, have been known...
The double network concept, based on the fracture of sacrificial bonds, has been revolutionary towar...
Systematic loading and unloading experiments, in uniaxial tension and uniaxial compression, have bee...
In this review we highlight new developments in tough hydrogel materials in terms of their enhanced ...
Double-network gels are a class of tough soft materials comprising two elastic networks with contras...
The high fracture energy of tough soft materials can be attributed to the large energy dissipation z...
Longer and stronger; stiff but not brittle Hydrogels are highly water-swoll...
Inspired by the toughening mechanism of double-network (DN) gels, tough hydrogel composites with a s...
Hydrogels are three dimensional macromolecular networks, characterized by soft-wet structure. The in...
Hydrogels’ applications are limited by their weak mechanical properties. The toughness, modulus, and...
Smart materials with self-growing and tailorable mechanical strength have wide-range potential appli...
Hydrogels are major components of the human body. To replace a damaged hydrogel in the body or suppo...
As swollen polymer networks in water, hydrogels are usually brittle. However, hydrogels with high to...