Biological tissues are often highly and multiply heterogeneous in both structure and composition, but the integrity of multiheterogeneity in artificial materials is still a big challenge. Herein, dually heterogeneous hydrogels were constructed with two distinct strategies via dynamic bonds and supramolecular cross-links. The hydrogels showed discontinuous spatial ruptures, and the mechanical behaviors of hydrogels could be tuned. The primary heterogeneity resulted from a nonuniform distribution of dynamic and/or static cross-links. The presence of only primary heterogeneity within hydrogels led to uneven mechanical properties that were represented by discontinuous spatial ruptures during the stretching the hydrogel and therefore caused the ...
Nature uses combined covalent (chemical bonds) and non-covalent (physical bonds) synthesis in a high...
Hydrogels with high mechanical strength are needed for a variety of industrial applications. Here, a...
Hybrid nanocomposites were constructed based on colloidal nanofibrillar hydrogels with interpenetrat...
Liquid solid transition is a widely used strategy to shape polymeric materials and encode their micr...
Liquid–solid transition is a widely used strategy to shape polymeric materials and encode their micr...
Cross-link density is an important parameter for the macroscopic mechanical properties of hydrogels....
Attempts to rationally tune the macroscopic mechanical performance of supramolecular hydrogel networ...
Many natural materials such as intervertebral disk (IVD) are composed of regions with large mismatch...
Rational design of hydrogels that balance processability and extracellular matrix (ECM) biomimicry r...
Compositional changes in the chemical makeup of hydrogels offer a powerful strategy for fine tuning ...
Although self-healing gels with structural resemblance to biological tissues attract great attention...
Many natural materials such as intervertebral disk (IVD) are composed of regions with large mismatch...
Dynamic noncovalent interactions with reversible nature are critical for the integral synthesis of s...
Cross-link density is an important parameter for the macroscopic mechanical properties of hydrogels....
The research of hydrogels has been increasingly focused on designing an effective energy dissipation...
Nature uses combined covalent (chemical bonds) and non-covalent (physical bonds) synthesis in a high...
Hydrogels with high mechanical strength are needed for a variety of industrial applications. Here, a...
Hybrid nanocomposites were constructed based on colloidal nanofibrillar hydrogels with interpenetrat...
Liquid solid transition is a widely used strategy to shape polymeric materials and encode their micr...
Liquid–solid transition is a widely used strategy to shape polymeric materials and encode their micr...
Cross-link density is an important parameter for the macroscopic mechanical properties of hydrogels....
Attempts to rationally tune the macroscopic mechanical performance of supramolecular hydrogel networ...
Many natural materials such as intervertebral disk (IVD) are composed of regions with large mismatch...
Rational design of hydrogels that balance processability and extracellular matrix (ECM) biomimicry r...
Compositional changes in the chemical makeup of hydrogels offer a powerful strategy for fine tuning ...
Although self-healing gels with structural resemblance to biological tissues attract great attention...
Many natural materials such as intervertebral disk (IVD) are composed of regions with large mismatch...
Dynamic noncovalent interactions with reversible nature are critical for the integral synthesis of s...
Cross-link density is an important parameter for the macroscopic mechanical properties of hydrogels....
The research of hydrogels has been increasingly focused on designing an effective energy dissipation...
Nature uses combined covalent (chemical bonds) and non-covalent (physical bonds) synthesis in a high...
Hydrogels with high mechanical strength are needed for a variety of industrial applications. Here, a...
Hybrid nanocomposites were constructed based on colloidal nanofibrillar hydrogels with interpenetrat...