There has been a considerable interest in developing stiff, strong, tough, and highly stretchable hydrogels in various fields of science and technology including biomedical and sensing applications. However, simultaneous optimization of stiffness, strength, toughness, and extensibility is a challenge for any material, and hydrogels are well-known to be mechanically weak materials. Here, we demonstrate that poly(ethylene oxide)-based dual stimuli-responsive semicrystalline poly(urethane-urea) (PU) copolymers with high hard segment contents (30 and 40%) can be utilized as stiff, strong, tough, and highly stretchable hydrogels with an elastic modulus (4-10 MPa) tens to hundreds of times higher than that of conventional hydrogels (0.01-0.1 MPa)...
Hydrogels can be synthesized with most of the properties needed for biomaterials applications. Soft,...
Hydrogels were prepared with physical cross-links comprising 2-ureido-4[1H]-pyrimidinone (UPy) hydr...
Excellent self-recovery is critically important for soft materials such as hydrogels and shape memor...
There has been a considerable interest in developing stiff, strong, tough, and highly stretchable hy...
Recoverable hydrogels with high strength and toughness have been fabricated from hydrophilic and the...
Recoverable hydrogels with high stretch and toughness have been synthesized by a one-step radical po...
Hydrogels were prepared with physical cross-links comprising 2-ureido-4[1H]-pyrimidinone (UPy) hydro...
Shape memory hydrogels (SMHs), a promising class of smart materials for biomedical applications, hav...
Hydrogels has gained its popularity among researchers in recent years due to its unique properties. ...
Design of tough hydrogels has made great progress in the past two decades. However, the synthetic to...
A hydrogel can be viewed as a unique combination of liquid and solid, the liquid side properties end...
Hydrogels are tridimensional networks that are able to retain important amounts of water. These soft...
Shape memory hydrogels (SMHs) have a wide range of potential practical applications. However, the me...
Hydrogels are major components of the human body. To replace a damaged hydrogel in the body or suppo...
Achieving a unique combination of stiffness, strength, extensibility, and toughness in sol-cast poly...
Hydrogels can be synthesized with most of the properties needed for biomaterials applications. Soft,...
Hydrogels were prepared with physical cross-links comprising 2-ureido-4[1H]-pyrimidinone (UPy) hydr...
Excellent self-recovery is critically important for soft materials such as hydrogels and shape memor...
There has been a considerable interest in developing stiff, strong, tough, and highly stretchable hy...
Recoverable hydrogels with high strength and toughness have been fabricated from hydrophilic and the...
Recoverable hydrogels with high stretch and toughness have been synthesized by a one-step radical po...
Hydrogels were prepared with physical cross-links comprising 2-ureido-4[1H]-pyrimidinone (UPy) hydro...
Shape memory hydrogels (SMHs), a promising class of smart materials for biomedical applications, hav...
Hydrogels has gained its popularity among researchers in recent years due to its unique properties. ...
Design of tough hydrogels has made great progress in the past two decades. However, the synthetic to...
A hydrogel can be viewed as a unique combination of liquid and solid, the liquid side properties end...
Hydrogels are tridimensional networks that are able to retain important amounts of water. These soft...
Shape memory hydrogels (SMHs) have a wide range of potential practical applications. However, the me...
Hydrogels are major components of the human body. To replace a damaged hydrogel in the body or suppo...
Achieving a unique combination of stiffness, strength, extensibility, and toughness in sol-cast poly...
Hydrogels can be synthesized with most of the properties needed for biomaterials applications. Soft,...
Hydrogels were prepared with physical cross-links comprising 2-ureido-4[1H]-pyrimidinone (UPy) hydr...
Excellent self-recovery is critically important for soft materials such as hydrogels and shape memor...