A facile method is developed to fabricate nanocomposite double-network (DN) gels with excellent mechanical properties, which do not fracture upon loading up to 78 MPa and a strain above 0.98, by compositing of carbon nanotubes (CNTs) without organic modification. Investigations of swelling behaviors, and compressive and tensile properties indicate that equilibrium swelling ratio, compressive modulus and stress, fracture stress, Young’s modulus, and yield stress are significantly improved in the presence of CNTs. Scanning electron microscopy (SEM) reveals that the pore size of nanocomposite DN gels is decreased and some embedded micro-network structures are observed on the fracture surface in comparison to DN gels without CNTs, which leads ...
Double network (DN) hydrogels with two strong asymmetric networks being chemically linked have demon...
Among the hydrogels prepared in recent years, double network (DN) hydrogels exhibit the highest comp...
Inspired by the toughening mechanism of double-network (DN) gels, tough hydrogel composites with a s...
Abstract: A facile method is developed to fabricate nanocomposite double-network (DN) gels with exce...
Hydrogels have great potential as soft body tissue replacements. However due to their weak mechanica...
Nanocomposite hydrogels based on carbon nanotubes (CNTs) are known to possess remarkable stiffness, ...
Nanocomposite hydrogels based on carbon nanotubes (CNTs) are known to possess remarkable stiffness, ...
Although double network (DN) hydrogels are extremly tough, they are irreversibly softened during lar...
AbstractThe double network (DN) technique, developed by authors’ group, provides an innovative and u...
Novel high strength composite hydrogels were designed and synthesized by introducing multiwalled car...
Hydrogels are polymeric materials that have a relatively high capacity for holding water. Recently, ...
[[abstract]]The use of network and dispersed carbon nanotubes (CNT) as reinforcements for fabricatin...
Hydrogel has been widely used in tissue engineering application due to its biocompatibility and its ...
Biomimetic hydrogels with triple networks have been developed via in situ polymerization and additio...
Double network (DN) gels, consisting of a brittle first and flexible second network, have been known...
Double network (DN) hydrogels with two strong asymmetric networks being chemically linked have demon...
Among the hydrogels prepared in recent years, double network (DN) hydrogels exhibit the highest comp...
Inspired by the toughening mechanism of double-network (DN) gels, tough hydrogel composites with a s...
Abstract: A facile method is developed to fabricate nanocomposite double-network (DN) gels with exce...
Hydrogels have great potential as soft body tissue replacements. However due to their weak mechanica...
Nanocomposite hydrogels based on carbon nanotubes (CNTs) are known to possess remarkable stiffness, ...
Nanocomposite hydrogels based on carbon nanotubes (CNTs) are known to possess remarkable stiffness, ...
Although double network (DN) hydrogels are extremly tough, they are irreversibly softened during lar...
AbstractThe double network (DN) technique, developed by authors’ group, provides an innovative and u...
Novel high strength composite hydrogels were designed and synthesized by introducing multiwalled car...
Hydrogels are polymeric materials that have a relatively high capacity for holding water. Recently, ...
[[abstract]]The use of network and dispersed carbon nanotubes (CNT) as reinforcements for fabricatin...
Hydrogel has been widely used in tissue engineering application due to its biocompatibility and its ...
Biomimetic hydrogels with triple networks have been developed via in situ polymerization and additio...
Double network (DN) gels, consisting of a brittle first and flexible second network, have been known...
Double network (DN) hydrogels with two strong asymmetric networks being chemically linked have demon...
Among the hydrogels prepared in recent years, double network (DN) hydrogels exhibit the highest comp...
Inspired by the toughening mechanism of double-network (DN) gels, tough hydrogel composites with a s...