The chemical oxidation method can be used to mass-produce graphene oxides (GOs) from highly oriented pyrolytic graphite. However, numerous oxygen-containing functional groups (hydroxyl, epoxy, carbonyl, etc.) exist in typical GO surfaces, resulting in serious electrical losses. Hence, GO must be processed into reduced graphene oxide (rGO) by the removal of most of the oxygen-containing functional groups. This research concentrates on the reduction efficiency of GO films that are manufactured using atmospheric-pressure and continuous plasma irradiation. Before and after sessions of plasma irradiation with various irradiation times, shelters, and working distances, the surface, physical, and electrical characteristics of homemade GO and rGO f...
Control over oxygen functionalities is important for the realization of Graphene Oxide (GO) based ap...
The chemical reduction efficiencies of graphene oxide (GO) are critically important in achieving gra...
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ...
Graphene oxide (GO) is an electrical insulator with good mechanical and thermal properties. It exhib...
Graphene oxide (GO) is an electrical insulator with good mechanical and thermal properties. It exhib...
Reduction of graphene oxide (GO) at low temperature and atmospheric pressure via plasma-assisted che...
Transparent, conductive, and mechanically flexible graphene films are seen as an alternative to indi...
We report an easily controllable, eco-friendly method for tailoring the properties of reduced graphe...
This report covers the experimental setup that is to be devised for the reduction of graphene oxide ...
This report covers the experimental setup that is to be devised for the reduction of graphene oxide ...
Graphene with high electronic transport, large surface-to-volume ratio and nanometer thickness is ex...
Room temperature hydrogen plasma treatment on solution processed 300nm graphene oxide (GO) films on ...
https://kent-islandora.s3.us-east-2.amazonaws.com/ugresearch/2017/phys_chem_lc/2/thumbnail.jpgGraphe...
A facile green approach for the preparation of reduced graphene oxide (RGO), based on a non-thermal ...
The thermal stability and reduction kinetics, of graphene oxide were studied by measuring the electr...
Control over oxygen functionalities is important for the realization of Graphene Oxide (GO) based ap...
The chemical reduction efficiencies of graphene oxide (GO) are critically important in achieving gra...
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ...
Graphene oxide (GO) is an electrical insulator with good mechanical and thermal properties. It exhib...
Graphene oxide (GO) is an electrical insulator with good mechanical and thermal properties. It exhib...
Reduction of graphene oxide (GO) at low temperature and atmospheric pressure via plasma-assisted che...
Transparent, conductive, and mechanically flexible graphene films are seen as an alternative to indi...
We report an easily controllable, eco-friendly method for tailoring the properties of reduced graphe...
This report covers the experimental setup that is to be devised for the reduction of graphene oxide ...
This report covers the experimental setup that is to be devised for the reduction of graphene oxide ...
Graphene with high electronic transport, large surface-to-volume ratio and nanometer thickness is ex...
Room temperature hydrogen plasma treatment on solution processed 300nm graphene oxide (GO) films on ...
https://kent-islandora.s3.us-east-2.amazonaws.com/ugresearch/2017/phys_chem_lc/2/thumbnail.jpgGraphe...
A facile green approach for the preparation of reduced graphene oxide (RGO), based on a non-thermal ...
The thermal stability and reduction kinetics, of graphene oxide were studied by measuring the electr...
Control over oxygen functionalities is important for the realization of Graphene Oxide (GO) based ap...
The chemical reduction efficiencies of graphene oxide (GO) are critically important in achieving gra...
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ...