The effects of graphene oxide (GO) size and reduction method on mechanical property and electrical conductivity of GO papers are studied. GO sheets are prepared using the modified Hummers method and GO papers are fabricated through vacuum filtration of GO aqueous dispersions. To study the size effect, the as-prepared GO dispersion is sorted into four different groups with uniform sizes after repeated centrifugation and collection of supernatant. It is found that the Young's modulus, tensile strength and electrical conductivity increase consistently with increasing the GO size. Three methods, including hydrazine reduction, hydrogen iodide reduction and thermal treatment, are employed to reduce the GO sheets. The highest electrical conductivi...
The ability of graphene oxide (GO) aqueous suspensions to form robust GO paper is largely improved b...
The ability of graphene oxide (GO) aqueous suspensions to form robust GO paper is largely improved b...
The ability of graphene oxide (GO) aqueous suspensions to form robust GO paper is largely improved b...
Macroscopic, freestanding graphene-based paper-like materials are of interest for use as mechanicall...
Carbon nanofiber (CNF)/graphene oxide (GO) hybrid papers are prepared by vacuum filtration of mixed ...
We report fabrication of reduced graphene oxides (RGO) papers using thermal reduction by vacuum-assi...
In this study, the effect of reduction on the electrical conductivity of Graphene Oxide (GO) is inve...
We report fabrication of reduced graphene oxide (rGO) films using chemical reduction by hydrazine hy...
Reduction of graphene oxide is primarily important because different reduction methods may result in...
Graphene exhibits a range of interesting properties such as high optical transmittance, good thermal...
The mechanical performance o f graphene oxide (GO) paper was switched from brittle to relatively tou...
The promising electronic, mechanical and thermal properties of graphene for high demanding applicati...
The chemical reduction efficiencies of graphene oxide (GO) are critically important in achieving gra...
The ability of graphene oxide (GO) aqueous suspensions to form robust GO paper is largely improved b...
The ability of graphene oxide (GO) aqueous suspensions to form robust GO paper is largely improved b...
The ability of graphene oxide (GO) aqueous suspensions to form robust GO paper is largely improved b...
The ability of graphene oxide (GO) aqueous suspensions to form robust GO paper is largely improved b...
The ability of graphene oxide (GO) aqueous suspensions to form robust GO paper is largely improved b...
Macroscopic, freestanding graphene-based paper-like materials are of interest for use as mechanicall...
Carbon nanofiber (CNF)/graphene oxide (GO) hybrid papers are prepared by vacuum filtration of mixed ...
We report fabrication of reduced graphene oxides (RGO) papers using thermal reduction by vacuum-assi...
In this study, the effect of reduction on the electrical conductivity of Graphene Oxide (GO) is inve...
We report fabrication of reduced graphene oxide (rGO) films using chemical reduction by hydrazine hy...
Reduction of graphene oxide is primarily important because different reduction methods may result in...
Graphene exhibits a range of interesting properties such as high optical transmittance, good thermal...
The mechanical performance o f graphene oxide (GO) paper was switched from brittle to relatively tou...
The promising electronic, mechanical and thermal properties of graphene for high demanding applicati...
The chemical reduction efficiencies of graphene oxide (GO) are critically important in achieving gra...
The ability of graphene oxide (GO) aqueous suspensions to form robust GO paper is largely improved b...
The ability of graphene oxide (GO) aqueous suspensions to form robust GO paper is largely improved b...
The ability of graphene oxide (GO) aqueous suspensions to form robust GO paper is largely improved b...
The ability of graphene oxide (GO) aqueous suspensions to form robust GO paper is largely improved b...
The ability of graphene oxide (GO) aqueous suspensions to form robust GO paper is largely improved b...