Hydrogels can be synthesized with most of the properties needed for biomaterials applications. Soft, wettable, and highly permeable gels with a practically unlimited breadth of chemical functionalities are routinely made in the laboratory. However, the ability to make highly elastic and durable hydrogels remains limited. Here we describe an approach to generate stretchy, durable hydrogels, employing a high polymer-to-crosslink ratio for extensibility, combined with an aggregating copolymer phase to provide stability against swelling. We find that the addition of aggregating co-polymer can produce a highly extensible gel that fails at 1000% strain, recovers from large strains within a few minutes, maintains its elasticity over repeated cycle...
Hydrogels and organogels made from polymer networks are widely used in biomedical applications and s...
Hydrogels and organogels made from polymer networks are widely used in biomedical applications and s...
Hydrogels and organogels made from polymer networks are widely used in biomedical applications and s...
Longer and stronger; stiff but not brittle Hydrogels are highly water-swoll...
Longer and stronger; stiff but not brittle Hydrogels are highly water-swoll...
In this review we highlight new developments in tough hydrogel materials in terms of their enhanced ...
In this review we highlight new developments in tough hydrogel materials in terms of their enhanced ...
Hydrogels are tridimensional networks that are able to retain important amounts of water. These soft...
Hydrogels and organogels made from polymer networks are widely used in biomedical applications and s...
In many animals, tough skeletal muscle contraction occurs, producing a strong force through myofilam...
In many animals, tough skeletal muscle contraction occurs, producing a strong force through myofilam...
In many animals, tough skeletal muscle contraction occurs, producing a strong force through myofilam...
In many animals, tough skeletal muscle contraction occurs, producing a strong force through myofilam...
Hydrogels are tridimensional networks that are able to retain important amounts of water. These soft...
In many animals, tough skeletal muscle contraction occurs, producing a strong force through myofilam...
Hydrogels and organogels made from polymer networks are widely used in biomedical applications and s...
Hydrogels and organogels made from polymer networks are widely used in biomedical applications and s...
Hydrogels and organogels made from polymer networks are widely used in biomedical applications and s...
Longer and stronger; stiff but not brittle Hydrogels are highly water-swoll...
Longer and stronger; stiff but not brittle Hydrogels are highly water-swoll...
In this review we highlight new developments in tough hydrogel materials in terms of their enhanced ...
In this review we highlight new developments in tough hydrogel materials in terms of their enhanced ...
Hydrogels are tridimensional networks that are able to retain important amounts of water. These soft...
Hydrogels and organogels made from polymer networks are widely used in biomedical applications and s...
In many animals, tough skeletal muscle contraction occurs, producing a strong force through myofilam...
In many animals, tough skeletal muscle contraction occurs, producing a strong force through myofilam...
In many animals, tough skeletal muscle contraction occurs, producing a strong force through myofilam...
In many animals, tough skeletal muscle contraction occurs, producing a strong force through myofilam...
Hydrogels are tridimensional networks that are able to retain important amounts of water. These soft...
In many animals, tough skeletal muscle contraction occurs, producing a strong force through myofilam...
Hydrogels and organogels made from polymer networks are widely used in biomedical applications and s...
Hydrogels and organogels made from polymer networks are widely used in biomedical applications and s...
Hydrogels and organogels made from polymer networks are widely used in biomedical applications and s...