The possibility for the switch-over of the growth mode from a continuous network to unidirectional arrays of well-separated, self-organized, vertically oriented graphene nanosheets has been demonstrated using a unique, yet simple plasma-based approach. The process enables highly reproducible, catalyst-free synthesis of arrays of graphene nanosheets with reactive open graphitic edges facing upwards. Effective control over the nanosheet length, number density, and the degree of alignment along the electric field direction is achieved by a simple variation of the substrate bias. These results are of interest for environment-friendly fabrication of next-generation nanodevices based on three-dimensional, ordered self-organized nanoarrays of acti...
A simple, uniquely plasma-enabled and environment-friendly process to reduce the thickness of vertic...
The formation of vertically aligned single-crystalline silicon nanostructures via "self-organized" m...
This presentation focuses on nanoscale control of energy and matter for a sustainable future and the...
The formation of clearly separated vertical graphenenanosheets on silicon nanograss support is demon...
The possibility of effective control of morphology and electrical properties of self-organized graph...
Applications of plasma-produced vertically oriented graphene nanosheets (VGNs) rely on their unique ...
Vertically oriented graphenes have been grown for more than a decade, but until now the chemical and...
Driven by the innate tendency of the system to attain a local energy minimum, self-organization enab...
Driven by the innate tendency of the system to attain a local energy minimum, self-organization enab...
Microwave plasma driven chemical vapour deposition was used to synthesize graphene nanosheets from a...
Driven by the innate tendency of the system to attain a local energy minimum, self-organization enab...
It is well known that graphene grows as flat sheets aligned with the growth substrate. Oriented grap...
Driven by the innate tendency of the system to attain a local energy minimum, self-organization enab...
A simple, uniquely plasma-enabled and environment-friendly process to reduce the thickness of vertic...
The formation of vertically aligned single-crystalline silicon nanostructures via "self-organized" m...
This presentation focuses on nanoscale control of energy and matter for a sustainable future and the...
The formation of clearly separated vertical graphenenanosheets on silicon nanograss support is demon...
The possibility of effective control of morphology and electrical properties of self-organized graph...
Applications of plasma-produced vertically oriented graphene nanosheets (VGNs) rely on their unique ...
Vertically oriented graphenes have been grown for more than a decade, but until now the chemical and...
Driven by the innate tendency of the system to attain a local energy minimum, self-organization enab...
Driven by the innate tendency of the system to attain a local energy minimum, self-organization enab...
Microwave plasma driven chemical vapour deposition was used to synthesize graphene nanosheets from a...
Driven by the innate tendency of the system to attain a local energy minimum, self-organization enab...
It is well known that graphene grows as flat sheets aligned with the growth substrate. Oriented grap...
Driven by the innate tendency of the system to attain a local energy minimum, self-organization enab...
A simple, uniquely plasma-enabled and environment-friendly process to reduce the thickness of vertic...
The formation of vertically aligned single-crystalline silicon nanostructures via "self-organized" m...
This presentation focuses on nanoscale control of energy and matter for a sustainable future and the...