A series of physical double-network hydrogels is synthesized based on an amphiphilic triblock copolymer. The gel, which contains strong hydrophobic domains and sacrificial dynamic bonds of hydrogen bonds, is stiff and tough, and even stiffens in concentrated saline solution. Furthermore, due to its supramolecular structure, the gel features improved self-healing and self-recovery abilities
Among the hydrogels prepared in recent years, double network (DN) hydrogels exhibit the highest comp...
A cationic surfactant monomer, dimethyldodecy1(2-acrylamidoethypammonium bromide (AMQC(12)) was synt...
A hydrogel is a three-dimensional polymer network with high water content and has been attractive fo...
Macroscopic hydrogel fibers are highly desirable for smart textiles, but the fabrication of self-hea...
Incorporating sacrificial bonds into hydrogels networks has been demonstrated an efficient way to ob...
Double network (DN) hydrogels with two strong asymmetric networks being chemically linked have demon...
Hydrogels are polymeric materials that have a relatively high capacity for holding water. Recently, ...
Inspired by the toughening mechanism of double-network (DN) gels, tough hydrogel composites with a s...
Tough and self-healing hydrogels can be developed by incorporating non-covalent dynamic bonds in the...
AbstractThe double network (DN) technique, developed by authors’ group, provides an innovative and u...
This brief review attempts to summarize research advances in the mechanical toughness and structures...
In this review we highlight new developments in tough hydrogel materials in terms of their enhanced ...
We report the preparation and structural and mechanical characterization of a tough supramolecular h...
The high water content of hydrogels makes them important as synthetic biomaterials, and tuning the m...
We report the preparation and structural and mechanical characterization of a tough supramolecular h...
Among the hydrogels prepared in recent years, double network (DN) hydrogels exhibit the highest comp...
A cationic surfactant monomer, dimethyldodecy1(2-acrylamidoethypammonium bromide (AMQC(12)) was synt...
A hydrogel is a three-dimensional polymer network with high water content and has been attractive fo...
Macroscopic hydrogel fibers are highly desirable for smart textiles, but the fabrication of self-hea...
Incorporating sacrificial bonds into hydrogels networks has been demonstrated an efficient way to ob...
Double network (DN) hydrogels with two strong asymmetric networks being chemically linked have demon...
Hydrogels are polymeric materials that have a relatively high capacity for holding water. Recently, ...
Inspired by the toughening mechanism of double-network (DN) gels, tough hydrogel composites with a s...
Tough and self-healing hydrogels can be developed by incorporating non-covalent dynamic bonds in the...
AbstractThe double network (DN) technique, developed by authors’ group, provides an innovative and u...
This brief review attempts to summarize research advances in the mechanical toughness and structures...
In this review we highlight new developments in tough hydrogel materials in terms of their enhanced ...
We report the preparation and structural and mechanical characterization of a tough supramolecular h...
The high water content of hydrogels makes them important as synthetic biomaterials, and tuning the m...
We report the preparation and structural and mechanical characterization of a tough supramolecular h...
Among the hydrogels prepared in recent years, double network (DN) hydrogels exhibit the highest comp...
A cationic surfactant monomer, dimethyldodecy1(2-acrylamidoethypammonium bromide (AMQC(12)) was synt...
A hydrogel is a three-dimensional polymer network with high water content and has been attractive fo...