Reinforcing hydrogels with a rigid scaffold is a promising method to greatly expand the mechanical and physical properties of hydrogels. One of the challenges of creating hydrogel composites is the significant stress that occurs due to swelling mismatch between the water-swollen hydrogel matrix and the rigid skeleton in aqueous media. This stress can cause physical deformation (wrinkling, buckling, or fracture), preventing the fabrication of robust composites. Here, a simple yet versatile method is introduced to create "macroscale" hydrogel composites, by utilizing a rigid reinforcing phase that can relieve stress-induced deformation. A low-melting-point alloy that can transform from a load-bearing solid state to a free-deformable liquid st...
Hydrogels have captivated the attention of several research and industry segments, including bioengi...
Longer and stronger; stiff but not brittle Hydrogels are highly water-swoll...
Biomimetic, strain-stiffening materials are reported, made through self-assembly and covalent fixati...
Inspired by the cellular design of plant tissue, we present an approach to make versatile, tough, hi...
Tough and stretchable conductive hydrogels are desirable for the emerging field of wearable and impl...
Many natural materials such as intervertebral disk (IVD) are composed of regions with large mismatch...
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...
Despite intensive research, hydrogels currently available for tissue repair in the musculoskeletal s...
Ligaments are unique wet biological tissues with high tensile modulus and fracture stress, combined ...
Hydrogels’ applications are limited by their weak mechanical properties. The toughness, modulus, and...
Load-bearing tissues such as articular cartilage or meniscus are not infallible. They might fail due...
Many natural materials such as intervertebral disk (IVD) are composed of regions with large mismatch...
A hydrogel can be viewed as a unique combination of liquid and solid, the liquid side properties end...
Fast advances in soft robotics and tissue engineering demand for new soft materials whose mechanical...
Hydrogels have captivated the attention of several research and industry segments, including bioengi...
Longer and stronger; stiff but not brittle Hydrogels are highly water-swoll...
Biomimetic, strain-stiffening materials are reported, made through self-assembly and covalent fixati...
Inspired by the cellular design of plant tissue, we present an approach to make versatile, tough, hi...
Tough and stretchable conductive hydrogels are desirable for the emerging field of wearable and impl...
Many natural materials such as intervertebral disk (IVD) are composed of regions with large mismatch...
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...
Despite intensive research, hydrogels currently available for tissue repair in the musculoskeletal s...
Ligaments are unique wet biological tissues with high tensile modulus and fracture stress, combined ...
Hydrogels’ applications are limited by their weak mechanical properties. The toughness, modulus, and...
Load-bearing tissues such as articular cartilage or meniscus are not infallible. They might fail due...
Many natural materials such as intervertebral disk (IVD) are composed of regions with large mismatch...
A hydrogel can be viewed as a unique combination of liquid and solid, the liquid side properties end...
Fast advances in soft robotics and tissue engineering demand for new soft materials whose mechanical...
Hydrogels have captivated the attention of several research and industry segments, including bioengi...
Longer and stronger; stiff but not brittle Hydrogels are highly water-swoll...
Biomimetic, strain-stiffening materials are reported, made through self-assembly and covalent fixati...