A detailed description of the electronic properties, chemical state, and structure of uniform single and few-layered graphene oxide (GO) thin films at different stages of reduction is reported. The residual oxygen content and structure of GO are monitored and these chemical and structural characteristics are correlated to electronic properties of the thin films at various stages of reduction. It is found that the electrical characteristics of reduced GO do not approach those of intrinsic graphene obtained by mechanical cleaving because the material remains significantly oxidized. The residual oxygen forms sp3 bonds with carbon atoms in the basal plane such that the carbon sp2 bonding fraction in fully reduced GO is ca 0.80. The minority sp3...
We investigated the conduction properties of pristine bulk graphene oxide (GO) with different oxidat...
Individual graphene oxide sheets subjected to chemical reduction were electrically characterized as ...
The stacking modes of graphene oxide monolayers (GO) when forming thin films is a crucial aspect det...
The chemical reduction efficiencies of graphene oxide (GO) are critically important in achieving gra...
In this article, we report a study carried out to understand how changes in environment and temperat...
As a two-dimensional material, graphene has attracted great interest among the research groups and t...
Re-establishment of electrical conductivity in graphene oxide (GO), the insulating form of graphene,...
Reduction of graphene oxide (GO) is a promising low-cost synthetic approach to bulk graphene, which ...
A suspended graphene oxide device is fabricated and investigated using a transmission electron micro...
Despite a growing interest in graphene, an aspect which is less studied is the electrical and optica...
The chemical oxidation method can be used to mass-produce graphene oxides (GOs) from highly oriented...
The promising electronic, mechanical and thermal properties of graphene for high demanding applicati...
Heralded as the next miracle material, graphene oxide (GO) has the potential to be used in a variety...
Dr. Gina Mancini-Samuelson, a professor of chemistry, and Alexandra Schmeltzer, a student researcher...
Chemically converted graphene is highly relevant for transparent conducting film applications such a...
We investigated the conduction properties of pristine bulk graphene oxide (GO) with different oxidat...
Individual graphene oxide sheets subjected to chemical reduction were electrically characterized as ...
The stacking modes of graphene oxide monolayers (GO) when forming thin films is a crucial aspect det...
The chemical reduction efficiencies of graphene oxide (GO) are critically important in achieving gra...
In this article, we report a study carried out to understand how changes in environment and temperat...
As a two-dimensional material, graphene has attracted great interest among the research groups and t...
Re-establishment of electrical conductivity in graphene oxide (GO), the insulating form of graphene,...
Reduction of graphene oxide (GO) is a promising low-cost synthetic approach to bulk graphene, which ...
A suspended graphene oxide device is fabricated and investigated using a transmission electron micro...
Despite a growing interest in graphene, an aspect which is less studied is the electrical and optica...
The chemical oxidation method can be used to mass-produce graphene oxides (GOs) from highly oriented...
The promising electronic, mechanical and thermal properties of graphene for high demanding applicati...
Heralded as the next miracle material, graphene oxide (GO) has the potential to be used in a variety...
Dr. Gina Mancini-Samuelson, a professor of chemistry, and Alexandra Schmeltzer, a student researcher...
Chemically converted graphene is highly relevant for transparent conducting film applications such a...
We investigated the conduction properties of pristine bulk graphene oxide (GO) with different oxidat...
Individual graphene oxide sheets subjected to chemical reduction were electrically characterized as ...
The stacking modes of graphene oxide monolayers (GO) when forming thin films is a crucial aspect det...