Abstract Hydrogels, also known as three-dimensional, flexible, and polymer networks, are composed of natural and/or synthetic polymers with exceptional properties such as hydrophilicity, biocompatibility, biofunctionality, and elasticity. Researchers in biomedicine, biosensing, pharmaceuticals, energy and environment, agriculture, and cosmetics are interested in hydrogels. Hydrogels have limited adaptability for complicated biological information transfer in biomedical applications due to their lack of electrical conductivity and low mechanical strength, despite significant advances in the development and use of hydrogels. The nano-filler-hydrogel hybrid system based on supramolecular interaction between host and guest has emerged as one of...
Hydrogels are hydrophilic, three-dimensional networks that are able to absorb large quantities of wa...
Hydrogels from biopolymers are readily synthesized, can possess various characteristics for differen...
Effective bone regeneration remains a challenge for bone-tissue engineering. In this study, we propo...
Hydrogels are composed of three-dimensional cross-linked polymer networks with hydrophilic nature, w...
With the advent of a new 2D nanomaterial, namely, black phosphorus (BP) or phosphorene, the scientif...
International audienceHydrogels are three-dimensional, water-swollen polymer networks that have been...
Hydrogels are the most iconic class of soft materials, and since their first report in the literatur...
Hybrid hydrogels from biopolymers have been applied for various indications across a wide range of b...
Hydrogels, as three-dimensional polymer networks, are able to retain a large amount of water in thei...
Hydrogels are three-dimensional polymeric network, capable of entrapping substantial amounts of flui...
Hydrogels are three-dimensional, cross-linked, and supramolecular networks that can absorb significa...
Hydrogels are a promising material for a variety of applications after appropriate functional and st...
Hydrogels are composed of three dimensional cross linked polymer network. The hydrogels shows excell...
Hydrogels are hydrophilic polymer materials that provide a wide range of physicochemical properties ...
Hydrogels are interesting materials for application in biomedicine due to their outstanding properti...
Hydrogels are hydrophilic, three-dimensional networks that are able to absorb large quantities of wa...
Hydrogels from biopolymers are readily synthesized, can possess various characteristics for differen...
Effective bone regeneration remains a challenge for bone-tissue engineering. In this study, we propo...
Hydrogels are composed of three-dimensional cross-linked polymer networks with hydrophilic nature, w...
With the advent of a new 2D nanomaterial, namely, black phosphorus (BP) or phosphorene, the scientif...
International audienceHydrogels are three-dimensional, water-swollen polymer networks that have been...
Hydrogels are the most iconic class of soft materials, and since their first report in the literatur...
Hybrid hydrogels from biopolymers have been applied for various indications across a wide range of b...
Hydrogels, as three-dimensional polymer networks, are able to retain a large amount of water in thei...
Hydrogels are three-dimensional polymeric network, capable of entrapping substantial amounts of flui...
Hydrogels are three-dimensional, cross-linked, and supramolecular networks that can absorb significa...
Hydrogels are a promising material for a variety of applications after appropriate functional and st...
Hydrogels are composed of three dimensional cross linked polymer network. The hydrogels shows excell...
Hydrogels are hydrophilic polymer materials that provide a wide range of physicochemical properties ...
Hydrogels are interesting materials for application in biomedicine due to their outstanding properti...
Hydrogels are hydrophilic, three-dimensional networks that are able to absorb large quantities of wa...
Hydrogels from biopolymers are readily synthesized, can possess various characteristics for differen...
Effective bone regeneration remains a challenge for bone-tissue engineering. In this study, we propo...