Graphene oxide (GO) is increasingly investigated as a reinforcing nanofiller for various hydrogels for biomedical applications for its superior mechanical strength. However, the reinforcing mechanism of GO in different hydrogel conditions has not been extensively explored and elucidated to date. Herein, we systematically examine the effects of various types of precursor molecules (monomers vs. macromers) as well as mode of GO incorporation (physical vs. covalent) on the mechanical properties of resulting composite hydrogels. Two hydrogel types, (1) polyacrylamide hydrogels with varying concentrations of acrylamide monomers and (2) poly(ethylene glycol) (PEG) hydrogels with varying molecular weights of PEG macromers, are used as model system...
International audienceThermoresponsive hydrogels have enormous potential e.g., as sensors, actuators...
Superior mechanical properties and self-healing are two hot topics in hydrogel science due to their ...
Supramolecular hydrogels, obtained from small organic molecules, may be advantageous over polymeric ...
Graphene oxide (GO) is increasingly investigated as a reinforcing nanofiller for various hydrogels f...
Graphene oxide (GO) is increasingly investigated as a reinforcing nanofiller for various hydrogels f...
Graphene-based materials are useful reinforcing agents to modify the mechanical properties of hydrog...
In this study we mixed low concentrations of graphene oxide (GO) with microgel (MG) particles and fo...
Graphene-based materials are useful reinforcing agents to modify the mechanical properties of hydrog...
Graphene-based materials are useful reinforcing agents to modify the mechanical properties of hydrog...
Polymer-based materials, such as fibers, hydrogels, and elastomers, are widely used in biomedical ap...
Graphene-based materials are useful reinforcing agents to modify the mechanical properties of hydrog...
Blood-contacting devices are increasingly important for the management of cardiovascular diseases. P...
Nanofiller-reinforced polymer nanocomposites can be used to improve the mechanical, thermal, electri...
In this work, graphene oxide (GO) and vinyl modified GO (V-GO)-based nanocomposite hydrogels with im...
Along with the development of nanomaterials and nanotechnology, graphene has attracted great attenti...
International audienceThermoresponsive hydrogels have enormous potential e.g., as sensors, actuators...
Superior mechanical properties and self-healing are two hot topics in hydrogel science due to their ...
Supramolecular hydrogels, obtained from small organic molecules, may be advantageous over polymeric ...
Graphene oxide (GO) is increasingly investigated as a reinforcing nanofiller for various hydrogels f...
Graphene oxide (GO) is increasingly investigated as a reinforcing nanofiller for various hydrogels f...
Graphene-based materials are useful reinforcing agents to modify the mechanical properties of hydrog...
In this study we mixed low concentrations of graphene oxide (GO) with microgel (MG) particles and fo...
Graphene-based materials are useful reinforcing agents to modify the mechanical properties of hydrog...
Graphene-based materials are useful reinforcing agents to modify the mechanical properties of hydrog...
Polymer-based materials, such as fibers, hydrogels, and elastomers, are widely used in biomedical ap...
Graphene-based materials are useful reinforcing agents to modify the mechanical properties of hydrog...
Blood-contacting devices are increasingly important for the management of cardiovascular diseases. P...
Nanofiller-reinforced polymer nanocomposites can be used to improve the mechanical, thermal, electri...
In this work, graphene oxide (GO) and vinyl modified GO (V-GO)-based nanocomposite hydrogels with im...
Along with the development of nanomaterials and nanotechnology, graphene has attracted great attenti...
International audienceThermoresponsive hydrogels have enormous potential e.g., as sensors, actuators...
Superior mechanical properties and self-healing are two hot topics in hydrogel science due to their ...
Supramolecular hydrogels, obtained from small organic molecules, may be advantageous over polymeric ...