The electrical conductivity of reduced graphene oxide (rGO) obtained from graphene oxide (GO) using sodium borohydride (NaBH4) as a reducing agent has been investigated as a function of time (2 min to 24 h) and temperature (20 degrees C to 80 degrees C). Using a 300 mM aqueous NaBH4 solution at 80 degrees C, reduction of GO occurred to a large extent during the first 10 min, which yielded a conductivity increase of 5 orders of magnitude to 10 S m(-1). During the residual 1400 min of reaction, the reduction rate decreased significantly, eventually resulting in a rGO conductivity of 1500 S m(-1). High resolution XPS measurements showed that C/O increased from 2.2 for the GO to 6.9 for the rGO at the longest reaction times, due to the eliminat...
The efficiency of two wet chemical processes based on hydroiodic acid (HI) and sodium borohydride (N...
In this study a dehydration hydrothermal technique has been used to introduce a simple, environmenta...
2 figures.Graphene oxide (GO) strongly attracts research interest due to its use as precursor materi...
The reduction of graphene oxide (GO) nanosheet is a promising route to produce a stable colloidal di...
Graphene oxide (GO) reduction is a promising way for graphene l arge scale synthesis. Pre-exfoliate...
안정적 인 분산액 을 유지하였다. We conducted reduction reactions of graphene oxide (GO) using three selected redu...
Graphene oxide (GO) reduction is one of the most promising methods for large scale graphene-like mat...
The study of the green reductant effects to produce reduced graphene oxide (rGO) has been completed ...
In this article, we report a study carried out to understand how changes in environment and temperat...
The chemical reduction efficiencies of graphene oxide (GO) are critically important in achieving gra...
A facile and green approach for the reduction of graphene oxide (GO) using tobacco leaves solution w...
In this study, the effect of reduction on the electrical conductivity of Graphene Oxide (GO) is inve...
Graphite oxidation with subsequent reduction is one of the most promising ways for large scale graph...
The effects of the crystallinity of natural graphites on the electrochemical performance of the resu...
In this study a dehydration hydrothermal technique has been used to introduce a simple, environmenta...
The efficiency of two wet chemical processes based on hydroiodic acid (HI) and sodium borohydride (N...
In this study a dehydration hydrothermal technique has been used to introduce a simple, environmenta...
2 figures.Graphene oxide (GO) strongly attracts research interest due to its use as precursor materi...
The reduction of graphene oxide (GO) nanosheet is a promising route to produce a stable colloidal di...
Graphene oxide (GO) reduction is a promising way for graphene l arge scale synthesis. Pre-exfoliate...
안정적 인 분산액 을 유지하였다. We conducted reduction reactions of graphene oxide (GO) using three selected redu...
Graphene oxide (GO) reduction is one of the most promising methods for large scale graphene-like mat...
The study of the green reductant effects to produce reduced graphene oxide (rGO) has been completed ...
In this article, we report a study carried out to understand how changes in environment and temperat...
The chemical reduction efficiencies of graphene oxide (GO) are critically important in achieving gra...
A facile and green approach for the reduction of graphene oxide (GO) using tobacco leaves solution w...
In this study, the effect of reduction on the electrical conductivity of Graphene Oxide (GO) is inve...
Graphite oxidation with subsequent reduction is one of the most promising ways for large scale graph...
The effects of the crystallinity of natural graphites on the electrochemical performance of the resu...
In this study a dehydration hydrothermal technique has been used to introduce a simple, environmenta...
The efficiency of two wet chemical processes based on hydroiodic acid (HI) and sodium borohydride (N...
In this study a dehydration hydrothermal technique has been used to introduce a simple, environmenta...
2 figures.Graphene oxide (GO) strongly attracts research interest due to its use as precursor materi...