We report the ultrastiff and tough poly(acrylamide-co-acrylic acid)/Na-alginate/Fe3+ (P(AM-co-AA)/Na-alginate/Fe3+) hydrogel via the formation of hybrid ionic–hydrogen bond cross-linking networks. The optimal P(AM-co-AA)/Na-alginate/Fe3+ hydrogel possessed super high elastic modulus (∼24.6 MPa), tensile strength (∼10.4 MPa), compression strength (∼44 MPa), and toughness (∼4800 J/m2). The P(AM-co-AA)/Na-alginate/Fe3+ hydrogel was highly stable and maintained its superior mechanical properties in 0.5–2 M NaCl solution, aqueous solution with pH ranging from 4 to 10. The ionic cross-linking networks of the P(AM-co-AA)/Na-alginate/Fe3+ hydrogels can be locally and selectively dissociated by treating with aqueous NaOH solution with pH of 13 ...
It is highly desired yet challenging to develop hydrogels with a combination of excellent mechanical...
that of cartilage [3]. Efforts to surmount these mechanical challenges have included the design of h...
Multifunctional adhesive hydrogels have great potential in flexible wearable materials, smart wearab...
We report the ultrastiff and tough poly(acrylamide-co-acrylic acid)/Na-alginate/Fe3+ (P(AM-co-AA)/...
We report a dual ionic cross-linking approach for the preparation of double-network hydrogels with r...
Understanding the structure-property relationships of tough double crosslinking hydrogels, especiall...
A hydrogel for potential applications in wound dressing should possess several peculiar properties, ...
The development of hydrogels for cartilage replacement and soft robotics has highlighted a challenge...
The applications of hydrogels are severely limited by their weak mechanical properties. Despite rece...
We demonstrate a facile and universal strategy in the fabrication of dual-cross-linked (DC) single n...
Hydrogels are polymer networks swollen in water. Because of their soft and wet nature, and their abi...
Hydrogels’ applications are limited by their weak mechanical properties. The toughness, modulus, and...
ABSTRACT: We successfully synthesized a family of alginate/polyacrylamide hydrogels using various mu...
Compositional changes in the chemical makeup of hydrogels offer a powerful strategy for fine tuning ...
In many animals, tough skeletal muscle contraction occurs, producing a strong force through myofilam...
It is highly desired yet challenging to develop hydrogels with a combination of excellent mechanical...
that of cartilage [3]. Efforts to surmount these mechanical challenges have included the design of h...
Multifunctional adhesive hydrogels have great potential in flexible wearable materials, smart wearab...
We report the ultrastiff and tough poly(acrylamide-co-acrylic acid)/Na-alginate/Fe3+ (P(AM-co-AA)/...
We report a dual ionic cross-linking approach for the preparation of double-network hydrogels with r...
Understanding the structure-property relationships of tough double crosslinking hydrogels, especiall...
A hydrogel for potential applications in wound dressing should possess several peculiar properties, ...
The development of hydrogels for cartilage replacement and soft robotics has highlighted a challenge...
The applications of hydrogels are severely limited by their weak mechanical properties. Despite rece...
We demonstrate a facile and universal strategy in the fabrication of dual-cross-linked (DC) single n...
Hydrogels are polymer networks swollen in water. Because of their soft and wet nature, and their abi...
Hydrogels’ applications are limited by their weak mechanical properties. The toughness, modulus, and...
ABSTRACT: We successfully synthesized a family of alginate/polyacrylamide hydrogels using various mu...
Compositional changes in the chemical makeup of hydrogels offer a powerful strategy for fine tuning ...
In many animals, tough skeletal muscle contraction occurs, producing a strong force through myofilam...
It is highly desired yet challenging to develop hydrogels with a combination of excellent mechanical...
that of cartilage [3]. Efforts to surmount these mechanical challenges have included the design of h...
Multifunctional adhesive hydrogels have great potential in flexible wearable materials, smart wearab...