Polymer-based materials, such as fibers, hydrogels, and elastomers, are widely used in biomedical applications for their compatibility with living organisms. However, due to their limited range of physical and chemical properties, it becomes necessary to augment their functions by appropriate modifications. Incorporating nanostructures having unique and favorable properties into a polymer-based material would be a highly strategy for this purpose. In this work, we developed a nanocomposite hydrogel system by covalently incorporating graphene oxide (GO) into gelatin-based hydrogels. GO is a 2D carbon nanomaterial well known for its electronic properties and mechanical strength. Mechanical strength of the resulting nanocomposite hydrogel was...
In tissue engineering strategies, the design of scaffolds based on nanostructures is a subject under...
In tissue engineering strategies, the design of scaffolds based on nanostructures is a subject under...
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...
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...
Graphene-based materials are useful reinforcing agents to modify the mechanical properties of hydrog...
Graphene oxide (GO) is increasingly investigated as a reinforcing nanofiller for various hydrogels f...
Blood-contacting devices are increasingly important for the management of cardiovascular diseases. P...
Graphene oxide (GO) is increasingly investigated as a reinforcing nanofiller for various hydrogels f...
In tissue engineering strategies, the design of scaffolds based on nanostructures is a subject under...
In tissue engineering strategies, the design of scaffolds based on nanostructures is a subject under...
In tissue engineering strategies, the design of scaffolds based on nanostructures is a subject under...
In tissue engineering strategies, the design of scaffolds based on nanostructures is a subject under...
In tissue engineering strategies, the design of scaffolds based on nanostructures is a subject under...
In tissue engineering strategies, the design of scaffolds based on nanostructures is a subject under...
In tissue engineering strategies, the design of scaffolds based on nanostructures is a subject under...
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...
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...
Graphene-based materials are useful reinforcing agents to modify the mechanical properties of hydrog...
Graphene oxide (GO) is increasingly investigated as a reinforcing nanofiller for various hydrogels f...
Blood-contacting devices are increasingly important for the management of cardiovascular diseases. P...
Graphene oxide (GO) is increasingly investigated as a reinforcing nanofiller for various hydrogels f...
In tissue engineering strategies, the design of scaffolds based on nanostructures is a subject under...
In tissue engineering strategies, the design of scaffolds based on nanostructures is a subject under...
In tissue engineering strategies, the design of scaffolds based on nanostructures is a subject under...
In tissue engineering strategies, the design of scaffolds based on nanostructures is a subject under...
In tissue engineering strategies, the design of scaffolds based on nanostructures is a subject under...
In tissue engineering strategies, the design of scaffolds based on nanostructures is a subject under...
In tissue engineering strategies, the design of scaffolds based on nanostructures is a subject under...
Graphene oxide (GO) is increasingly investigated as a reinforcing nanofiller for various hydrogels f...