Significant enhancement in mechanical stiffness (10-200%) and fracture strength (similar to 50%) of graphene oxide paper, a novel paperlike material made from individual graphene oxide sheets, can be achieved upon modification with a small amount (less than 1 wt %) of Mg2+ and Ca2+. These results (an be readily rationalized in terms of the chemical interactions between the functional groups of the graphene oxide sheets and the divalent metals ions. While oxygen functional groups on the basal planes of the sheets and the carboxylate groups on the edges can both bond to Mg2+ and Ca2+, the main contribution to mechanical enhancement of the paper comes from the latter
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...
In nacre, the excellent mechanical properties of materials are highly dependent on their intricate h...
The mechanical performance o f graphene oxide (GO) paper was switched from brittle to relatively tou...
raphene oxide, an oxygenated de-rivative of graphene, has been em-ployed in the fabrication of myria...
The superior mechanical flexibility, mechanical strength, electrical conductivity, high specific sur...
Macroscopic, freestanding graphene-based paper-like materials are of interest for use as mechanicall...
Graphene paper (GP) has been prepared by flow-directed assembly of graphene nanosheets. The mechanic...
The mechanical properties of pristine graphene oxide paper and paper-like films of polyvinyl alcohol...
Graphene oxide paper can be systematically modified with alkylamines in both solution- and vapor-pha...
The effects of graphene oxide (GO) size and reduction method on mechanical property and electrical c...
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...
The ability of graphene oxide (GO) aqueous suspensions to form robust GO paper is largely improved b...
In nacre, the excellent mechanical properties of materials are highly dependent on their intricate h...
The mechanical performance o f graphene oxide (GO) paper was switched from brittle to relatively tou...
raphene oxide, an oxygenated de-rivative of graphene, has been em-ployed in the fabrication of myria...
The superior mechanical flexibility, mechanical strength, electrical conductivity, high specific sur...
Macroscopic, freestanding graphene-based paper-like materials are of interest for use as mechanicall...
Graphene paper (GP) has been prepared by flow-directed assembly of graphene nanosheets. The mechanic...
The mechanical properties of pristine graphene oxide paper and paper-like films of polyvinyl alcohol...
Graphene oxide paper can be systematically modified with alkylamines in both solution- and vapor-pha...
The effects of graphene oxide (GO) size and reduction method on mechanical property and electrical c...
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...
The ability of graphene oxide (GO) aqueous suspensions to form robust GO paper is largely improved b...
In nacre, the excellent mechanical properties of materials are highly dependent on their intricate h...