Graphene oxide (GO)-based materials offer great potential for biofunctionalization with applications ranging from biosensing to drug delivery. Such biofunctionalization utilizes specific functional groups, typically a carboxyl moiety, as anchoring points for biomolecule. However, due to the fact that the exact chemical structure of GO is still largely unknown and poorly defined (it was postulated to consist of various oxygen-containing groups, such as epoxy, hydroxyl, carboxyl, carbonyl, and peroxy in varying ratios), it is challenging to fabricate highly biofunctionalized GO surfaces. The predominant anchoring sites (i.e., carboxyl groups) are mainly present as terminal groups on the edges of GO sheets and thus account for only a fraction ...
By exploiting the presence of abundant carboxylic groups (–COOH) on graphene oxide (GO) and using ED...
The oriented immobilization of glucose oxidase (GOD) on a selective support composed of graphene oxi...
Graphene oxide (GO) is a carbon nanostructure that has attracted a great interest due to its great s...
Graphene and graphene oxide have become the base of many advanced biosensors due to their exceptiona...
Reduced graphenes (belonging to the class of chemically modified graphenes, CMG) are one of the most...
A main advantage of graphene oxide (GO) over other materials is the high tunability of its surface f...
Graphene has unique mechanical, electronic, and optical properties, which researchers have used to d...
Sensitive and selective detection of dopamine (DA) is important for the early diagnosis of diseases ...
A main advantage of graphene oxide (GO) over other materials is the high tunability of its surface f...
The development of new applications of graphene oxide in the biomedical field requires the covalent ...
Graphene research, already prized, is nonetheless challenged to provide material advantages that bri...
There is immense demand for complex nanoarchitectures based on graphene nanostructures in the fields...
There is immense demand for complex nanoarchitectures based on graphene nanostructures in the fields...
Graphene oxide (GO) has immense potential for widespread use in diverse in vitro and in vivo biomedi...
By exploiting the presence of abundant carboxylic groups (–COOH) on graphene oxide (GO) and using ED...
By exploiting the presence of abundant carboxylic groups (–COOH) on graphene oxide (GO) and using ED...
The oriented immobilization of glucose oxidase (GOD) on a selective support composed of graphene oxi...
Graphene oxide (GO) is a carbon nanostructure that has attracted a great interest due to its great s...
Graphene and graphene oxide have become the base of many advanced biosensors due to their exceptiona...
Reduced graphenes (belonging to the class of chemically modified graphenes, CMG) are one of the most...
A main advantage of graphene oxide (GO) over other materials is the high tunability of its surface f...
Graphene has unique mechanical, electronic, and optical properties, which researchers have used to d...
Sensitive and selective detection of dopamine (DA) is important for the early diagnosis of diseases ...
A main advantage of graphene oxide (GO) over other materials is the high tunability of its surface f...
The development of new applications of graphene oxide in the biomedical field requires the covalent ...
Graphene research, already prized, is nonetheless challenged to provide material advantages that bri...
There is immense demand for complex nanoarchitectures based on graphene nanostructures in the fields...
There is immense demand for complex nanoarchitectures based on graphene nanostructures in the fields...
Graphene oxide (GO) has immense potential for widespread use in diverse in vitro and in vivo biomedi...
By exploiting the presence of abundant carboxylic groups (–COOH) on graphene oxide (GO) and using ED...
By exploiting the presence of abundant carboxylic groups (–COOH) on graphene oxide (GO) and using ED...
The oriented immobilization of glucose oxidase (GOD) on a selective support composed of graphene oxi...
Graphene oxide (GO) is a carbon nanostructure that has attracted a great interest due to its great s...