The recent success in synthesizing graphene monoxide (GMO) with rigorous stoichiometric ratio C:O = 1:1 has highlighted the need to determine its ground state geometry and to explore its physical properties. Using density functional theory and molecular dynamics simulation, we have found a new ether-type configuration of the GMO that is not only lower in energy than any other structures reported thus far, but is also stable up to 2000 K at which previous reported structures dissociate into CO molecules. The dynamic stability of the structure is further confirmed by calculating its phonon spectra. Furthermore, this ether-type structure exhibits anisotropies in mechanical stiffness and in electronic transport. Band gap, carrier concentration,...
Reduced graphene oxide (rGO) is a promising material for a variety of thin-film optoelectronic appli...
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...
Graphene oxide is an easy-to-make material that has a similar structure with graphene. However, the ...
The mechanical properties of graphene oxide (GO) are of great importance for applications in materia...
As silicon-based electronics are reaching the nanosize limits of the semiconductor roadmap, carbon-b...
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...
The structural, electronic, and vibrational properties of graphene oxide are studied by employing a ...
We present a detailed analysis of the factors influencing the formation of epoxide and ether groups ...
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 holds promise as a carbon-based nanomaterial that can be produced inexpensively in la...
Graphene, the first two-dimensional crystal ever found, is a material that has attracted fervent an...
Understanding the mechanical properties of graphene oxide (GO) is the primary challenge for applicat...
Reduced graphene oxide (rGO) is a promising material for a variety of thin-film optoelectronic appli...
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...
Graphene oxide is an easy-to-make material that has a similar structure with graphene. However, the ...
The mechanical properties of graphene oxide (GO) are of great importance for applications in materia...
As silicon-based electronics are reaching the nanosize limits of the semiconductor roadmap, carbon-b...
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...
The structural, electronic, and vibrational properties of graphene oxide are studied by employing a ...
We present a detailed analysis of the factors influencing the formation of epoxide and ether groups ...
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 holds promise as a carbon-based nanomaterial that can be produced inexpensively in la...
Graphene, the first two-dimensional crystal ever found, is a material that has attracted fervent an...
Understanding the mechanical properties of graphene oxide (GO) is the primary challenge for applicat...
Reduced graphene oxide (rGO) is a promising material for a variety of thin-film optoelectronic appli...
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...