We demonstrate a facile and universal strategy in the fabrication of dual-cross-linked (DC) single network hydrogels with high toughness, “nonswellability”, rapid self-healing, and versatile adhesiveness based on polymer–tannic acid (TA) multiple hydrogen bonds. Two widely used hydrogels, physically cross-linked poly(vinyl alcohol) and chemically cross-linked polyacrylamide, have been transformed to TA-based DC hydrogels by dipping the corresponding aerogels into TA solution. The second cross-link via multiple polymer–TA hydrogen bonds effectively suppresses the crack propagation, resulting in both DC gels with high mechanical strength. But these two TA-based DC hydrogels go through different deformation mechanisms during the stretching ba...
This brief review attempts to summarize research advances in the mechanical toughness and structures...
Hydrogels with self-healing features that can spontaneously repair themselves upon mechanical damage...
A hydrogel is a three-dimensional polymer network with high water content and has been attractive fo...
Hydrogels usually suffer from low mechanical strength, which largely limit their application in many...
Chemically linked double network (DN) hydrogels display extraordinary mechanical attributes but most...
Many high-strength hydrogels have been developed in recent years; however, few of them are both toug...
Development of tough and adhesive hydrogels is critical for different applications, including wound ...
We report a dual ionic cross-linking approach for the preparation of double-network hydrogels with r...
Hydrogels are polymeric materials that have a relatively high capacity for holding water. Recently, ...
Double network (DN) hydrogels with two strong asymmetric networks being chemically linked have demon...
The applications of hydrogels are severely limited by their weak mechanical properties. Despite rece...
Macroscopic hydrogel fibers are highly desirable for smart textiles, but the fabrication of self-hea...
Novel hydrogels with excellent mechanical properties have prompted applications in biomedical and ot...
A novel biocompatible polysaccharide-based hydrogel with double cross-linked network (DN) was design...
Among the hydrogels prepared in recent years, double network (DN) hydrogels exhibit the highest comp...
This brief review attempts to summarize research advances in the mechanical toughness and structures...
Hydrogels with self-healing features that can spontaneously repair themselves upon mechanical damage...
A hydrogel is a three-dimensional polymer network with high water content and has been attractive fo...
Hydrogels usually suffer from low mechanical strength, which largely limit their application in many...
Chemically linked double network (DN) hydrogels display extraordinary mechanical attributes but most...
Many high-strength hydrogels have been developed in recent years; however, few of them are both toug...
Development of tough and adhesive hydrogels is critical for different applications, including wound ...
We report a dual ionic cross-linking approach for the preparation of double-network hydrogels with r...
Hydrogels are polymeric materials that have a relatively high capacity for holding water. Recently, ...
Double network (DN) hydrogels with two strong asymmetric networks being chemically linked have demon...
The applications of hydrogels are severely limited by their weak mechanical properties. Despite rece...
Macroscopic hydrogel fibers are highly desirable for smart textiles, but the fabrication of self-hea...
Novel hydrogels with excellent mechanical properties have prompted applications in biomedical and ot...
A novel biocompatible polysaccharide-based hydrogel with double cross-linked network (DN) was design...
Among the hydrogels prepared in recent years, double network (DN) hydrogels exhibit the highest comp...
This brief review attempts to summarize research advances in the mechanical toughness and structures...
Hydrogels with self-healing features that can spontaneously repair themselves upon mechanical damage...
A hydrogel is a three-dimensional polymer network with high water content and has been attractive fo...