Graphene, the first two-dimensional crystal ever found, is a material that has attracted fervent and sustained interest from condensed matter researchers from around the world. It has a unique and unprecedented band structure in a bulk material: the bands near the Fermi level are linear, leading to massless charge carriers that propagate at the speed of light. However, graphene does not possess a band gap, and as such, it cannot be used to process information in any electronic device that uses digital logic. Graphene is oxidized when several different basic functional groups like hydroxyls, carboxyls, and epoxides bond to the hexagonal carbon basal plane to make graphene oxide (GO). The result is a nonstoichiometric and highly disordered ...
Controlled reduction of graphene oxide (GO) is a promising method to tune the electronic band gap of...
Density functional theory calculations are carried out to model the structure and interpret recent X...
The thermal decomposition of graphene oxide (GO) is a complex process at the atomic level and not fu...
Graphene, the first two-dimensional crystal ever found, is a material that has attracted fervent an...
Graphene oxide (GO) is a versatile 2D material whose properties can be tuned by changing the type an...
Graphene oxide (GO) is a versatile 2D material whose properties can be tuned by changing the type an...
Graphene oxide (GO) represents a complex family of materials related to graphene: easy to produce in...
Graphene oxide (GO) represents a complex family of materials related to graphene: easy to produce in...
In the last year, the investigation of two-dimensional materials as graphene oxide is a fundamental ...
Graphene oxide (GO) is a versatile 2D material whose properties can be tuned by changing the type an...
We have shown that the electronic structure of graphene oxide is strongly, but reversibly, affected ...
Graphene oxide (GO) is useful and promising material for graphene based applications in electronic, ...
Graphene oxide (GO) provides a potential route to large quantities of graphene, is cheap to make in ...
The type and distribution of oxygen functional groups in graphene oxide and reduced graphene oxide...
The utilisation of graphene structures as photonics materials mandates that an optically active elec...
Controlled reduction of graphene oxide (GO) is a promising method to tune the electronic band gap of...
Density functional theory calculations are carried out to model the structure and interpret recent X...
The thermal decomposition of graphene oxide (GO) is a complex process at the atomic level and not fu...
Graphene, the first two-dimensional crystal ever found, is a material that has attracted fervent an...
Graphene oxide (GO) is a versatile 2D material whose properties can be tuned by changing the type an...
Graphene oxide (GO) is a versatile 2D material whose properties can be tuned by changing the type an...
Graphene oxide (GO) represents a complex family of materials related to graphene: easy to produce in...
Graphene oxide (GO) represents a complex family of materials related to graphene: easy to produce in...
In the last year, the investigation of two-dimensional materials as graphene oxide is a fundamental ...
Graphene oxide (GO) is a versatile 2D material whose properties can be tuned by changing the type an...
We have shown that the electronic structure of graphene oxide is strongly, but reversibly, affected ...
Graphene oxide (GO) is useful and promising material for graphene based applications in electronic, ...
Graphene oxide (GO) provides a potential route to large quantities of graphene, is cheap to make in ...
The type and distribution of oxygen functional groups in graphene oxide and reduced graphene oxide...
The utilisation of graphene structures as photonics materials mandates that an optically active elec...
Controlled reduction of graphene oxide (GO) is a promising method to tune the electronic band gap of...
Density functional theory calculations are carried out to model the structure and interpret recent X...
The thermal decomposition of graphene oxide (GO) is a complex process at the atomic level and not fu...