The formation of three-dimensional shell-like structures with bilayer graphene walls is described. The structures are produced by the passage of an electric current through graphite in an arc-discharge apparatus. High resolution transmission electron microscopy is used to characterize the carbon, and provides evidence that the structures are three-dimensional rather than flat. A striking feature of the material is that it contains bilayer nanotubes seamlessly joined to larger shell-like regions. The possible growth mechanism of the carbon is discussed, and potential applications considered
CARBON exhibits a unique ability to form a wide range of structures. In an inert atmosphere it conde...
We demonstrate a technique for creating unique forms of pure sp(2)-bonded carbon and unprecedented h...
The passage of an electric current through graphite, or few-layer graphene, at high temperatures can...
The formation of three-dimensional shell-like structures with bilayer graphene walls is described. T...
The passage of an electric current through graphite or few-layer graphene can result in a striking s...
The passage of an electric current through graphite or few-layer graphene can result in a striking s...
The formation of novel structures by the passage of an electric current through graphite is describe...
A new class of carbon structure is reported, which consists of microscale graphitic shells bounded b...
The passage of an electric current through graphite or few-layer graphene can result in a striking s...
© The Royal Society of Chemistry.Junctions between carbon nanotubes and flat or curved graphene stru...
Junctions between carbon nanotubes and flat or curved graphene structures are fascinating for a numb...
Here, we demonstrate the synthesis of a three dimensional (3D) structure of vertically aligned carbo...
Here, we demonstrate the synthesis of a three dimensional (3D) structure of vertically aligned carbo...
CARBON exhibits a unique ability to form a wide range of structures. In an inert atmosphere it conde...
New quasi-one-dimensional hollow nanostructures similar to flattened nanotubes are numerically simu-...
CARBON exhibits a unique ability to form a wide range of structures. In an inert atmosphere it conde...
We demonstrate a technique for creating unique forms of pure sp(2)-bonded carbon and unprecedented h...
The passage of an electric current through graphite, or few-layer graphene, at high temperatures can...
The formation of three-dimensional shell-like structures with bilayer graphene walls is described. T...
The passage of an electric current through graphite or few-layer graphene can result in a striking s...
The passage of an electric current through graphite or few-layer graphene can result in a striking s...
The formation of novel structures by the passage of an electric current through graphite is describe...
A new class of carbon structure is reported, which consists of microscale graphitic shells bounded b...
The passage of an electric current through graphite or few-layer graphene can result in a striking s...
© The Royal Society of Chemistry.Junctions between carbon nanotubes and flat or curved graphene stru...
Junctions between carbon nanotubes and flat or curved graphene structures are fascinating for a numb...
Here, we demonstrate the synthesis of a three dimensional (3D) structure of vertically aligned carbo...
Here, we demonstrate the synthesis of a three dimensional (3D) structure of vertically aligned carbo...
CARBON exhibits a unique ability to form a wide range of structures. In an inert atmosphere it conde...
New quasi-one-dimensional hollow nanostructures similar to flattened nanotubes are numerically simu-...
CARBON exhibits a unique ability to form a wide range of structures. In an inert atmosphere it conde...
We demonstrate a technique for creating unique forms of pure sp(2)-bonded carbon and unprecedented h...
The passage of an electric current through graphite, or few-layer graphene, at high temperatures can...