Ligaments are unique wet biological tissues with high tensile modulus and fracture stress, combined with high bending flexibility. Developing synthetic materials with these properties is a significant challenge. Hydrogel composites made from high stiffness fabrics is a strategy to develop such unique materials; however, the ability to produce these materials has proven difficult, since common hydrogels swell in water and interact poorly with solid components, limiting the transfer of force from the fabric to the hydrogel matrix. In this work, for the first time, we successfully produce extraordinarily tough hydrogel composites by strategically selecting a recently developed tough hydrogel that de-swells in water. The new composites, consist...
The development of hydrogels for cartilage replacement and soft robotics has highlighted a challenge...
Mechanically robust and biomimicking scaffolds are needed for structural engineering of tissues such...
As swollen polymer networks in water, hydrogels are usually brittle. However, hydrogels with high to...
Fiber reinforced soft composites (FRSCs) have been developed recently by combining tough but soft po...
Tough hydrogels have shown strong potential as structural biomaterials. These hydrogels alone, howev...
Hydrogels’ applications are limited by their weak mechanical properties. The toughness, modulus, and...
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 major components of the human body. To replace a damaged hydrogel in the body or suppo...
Inspired by the cellular design of plant tissue, we present an approach to make versatile, tough, hi...
The development of hydrogels for cartilage replacement and soft robotics has highlighted a challenge...
A hydrogel can be viewed as a unique combination of liquid and solid, the liquid side properties end...
A hydrogel can be viewed as a unique combination of liquid and solid, the liquid side properties end...
We study the mechanical behavior of fiber-reinforced hydrogel composites. Most hydrogels are weak an...
Ideal candidates for the repair of robust biological tissues should exhibit diverse features such as...
The development of hydrogels for cartilage replacement and soft robotics has highlighted a challenge...
Mechanically robust and biomimicking scaffolds are needed for structural engineering of tissues such...
As swollen polymer networks in water, hydrogels are usually brittle. However, hydrogels with high to...
Fiber reinforced soft composites (FRSCs) have been developed recently by combining tough but soft po...
Tough hydrogels have shown strong potential as structural biomaterials. These hydrogels alone, howev...
Hydrogels’ applications are limited by their weak mechanical properties. The toughness, modulus, and...
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 major components of the human body. To replace a damaged hydrogel in the body or suppo...
Inspired by the cellular design of plant tissue, we present an approach to make versatile, tough, hi...
The development of hydrogels for cartilage replacement and soft robotics has highlighted a challenge...
A hydrogel can be viewed as a unique combination of liquid and solid, the liquid side properties end...
A hydrogel can be viewed as a unique combination of liquid and solid, the liquid side properties end...
We study the mechanical behavior of fiber-reinforced hydrogel composites. Most hydrogels are weak an...
Ideal candidates for the repair of robust biological tissues should exhibit diverse features such as...
The development of hydrogels for cartilage replacement and soft robotics has highlighted a challenge...
Mechanically robust and biomimicking scaffolds are needed for structural engineering of tissues such...
As swollen polymer networks in water, hydrogels are usually brittle. However, hydrogels with high to...