The observation of electron emission from amorphous carbon thin films at low applied electric fields is explained in terms of an enhancement of the field brought about by dielectric inhomogeneities within the film. These inhomogeneities originate from the differences between conductive, spatially localized sp2 C clusters surrounded by a more insulating sp3 matrix. By a more complete understanding of the concentration and distribution of the clusters, a generic model for field emission from amorphous carbon thin films can be developed. Extensions of this model to explain the emission properties of carbon nanotubes and carbon nanocomposite materials are also presented
The flat panel display market requires new and improved technologies in order to keep up with the re...
Considerable effort is currently expounded on the development and improvement of the myriad display ...
A model based on space charge band bending at the back junction is proposed to account for the elect...
The observation of electron emission from amorphous carbon thin films at low applied electric fields...
The observation of electron emission from amorphous carbon thin films at low applied electric fields...
This thesis is concerned with the research of the electron field emission properties of carbon based...
Thickness dependency of the field emission of amorphous and nanostructured carbon thin films has bee...
Thickness dependency of the field emission of amorphous and nanostructured carbon thin films has bee...
The influence of the concentration and size of sp2 carbon clusters on the field emission properties ...
This paper addresses issues in the theory of field-induced electron emission. First, it summarises o...
This paper addresses issues in the theory of field-induced electron emission. First, it summarises o...
The influence of concentration and size of sp (2) cluster on the transport properties and electron f...
Traditionally, the emission of electrons from materials have been explained using either the Fowler-...
The influence of concentration and size of sp (2) cluster on the transport properties and electron f...
The flat panel display market requires new and improved technologies in order to keep up with the re...
The flat panel display market requires new and improved technologies in order to keep up with the re...
Considerable effort is currently expounded on the development and improvement of the myriad display ...
A model based on space charge band bending at the back junction is proposed to account for the elect...
The observation of electron emission from amorphous carbon thin films at low applied electric fields...
The observation of electron emission from amorphous carbon thin films at low applied electric fields...
This thesis is concerned with the research of the electron field emission properties of carbon based...
Thickness dependency of the field emission of amorphous and nanostructured carbon thin films has bee...
Thickness dependency of the field emission of amorphous and nanostructured carbon thin films has bee...
The influence of the concentration and size of sp2 carbon clusters on the field emission properties ...
This paper addresses issues in the theory of field-induced electron emission. First, it summarises o...
This paper addresses issues in the theory of field-induced electron emission. First, it summarises o...
The influence of concentration and size of sp (2) cluster on the transport properties and electron f...
Traditionally, the emission of electrons from materials have been explained using either the Fowler-...
The influence of concentration and size of sp (2) cluster on the transport properties and electron f...
The flat panel display market requires new and improved technologies in order to keep up with the re...
The flat panel display market requires new and improved technologies in order to keep up with the re...
Considerable effort is currently expounded on the development and improvement of the myriad display ...
A model based on space charge band bending at the back junction is proposed to account for the elect...