The presence of adsorbate species on diamond surfaces, even in relatively small concentrations, strongly influences electrical, chemical and structural properties. Despite the technological significance, coverage of diamond by transition metals has received relatively little attention. In this paper, we present the results of density functional calculations examining up to a mono-layer of transition metals on the (001) diamond surface. We find that addition of carbide forming species, such as Ti, results in significantly higher adsorption energies at all surface coverages relative to non-carbide forming species. For monolayer coverage by Cu, and sub-monolayer coverage by Ti, we find a negative electron affinity. We propose that based upon t...
Wideband gap diamond-based materials are attracting huge interest for energy harvesting and quantum ...
ABSTRACT: The effect of B doping on the surface (111) reactivity has, in the present study, been inv...
This paper presents density functional theory results for the Li-adsorbed C(100)-(1x1):O system. Pre...
The chemical termination of diamond strongly impacts its electron affinity and thermal stability. We...
The energetics and electronic properties of oxides of selected transition metals (Cu, Ni, Ti and Zn)...
Diamond surfaces with suitable adsorbed chemical species can exhibit both negative and positive elec...
We have investigated, using density functional simulations, the energetics and the electronic proper...
We have investigated, using density functional simulations, the energetics and the electronic proper...
Recently a lithiated C(100)-(1 × 1):O surface has been demonstrated to possess a true negative elect...
In this thesis, we presented three studies that explore adsorbates or acceptor layers for enhancing ...
Diamond is a unique material with excellent properties. As a result of the development within the ar...
The tuning of electron affinity and secondary electron emission on diamond (100) surfaces due to cyc...
The tuning of electron affinity and secondary electron emission on diamond (100) surfaces due to cyc...
Diamond has since many years been applied in electronic fields due to its extraordinary properties. ...
Diamond has since many years been applied in electronic fields due to its extraordinary properties. ...
Wideband gap diamond-based materials are attracting huge interest for energy harvesting and quantum ...
ABSTRACT: The effect of B doping on the surface (111) reactivity has, in the present study, been inv...
This paper presents density functional theory results for the Li-adsorbed C(100)-(1x1):O system. Pre...
The chemical termination of diamond strongly impacts its electron affinity and thermal stability. We...
The energetics and electronic properties of oxides of selected transition metals (Cu, Ni, Ti and Zn)...
Diamond surfaces with suitable adsorbed chemical species can exhibit both negative and positive elec...
We have investigated, using density functional simulations, the energetics and the electronic proper...
We have investigated, using density functional simulations, the energetics and the electronic proper...
Recently a lithiated C(100)-(1 × 1):O surface has been demonstrated to possess a true negative elect...
In this thesis, we presented three studies that explore adsorbates or acceptor layers for enhancing ...
Diamond is a unique material with excellent properties. As a result of the development within the ar...
The tuning of electron affinity and secondary electron emission on diamond (100) surfaces due to cyc...
The tuning of electron affinity and secondary electron emission on diamond (100) surfaces due to cyc...
Diamond has since many years been applied in electronic fields due to its extraordinary properties. ...
Diamond has since many years been applied in electronic fields due to its extraordinary properties. ...
Wideband gap diamond-based materials are attracting huge interest for energy harvesting and quantum ...
ABSTRACT: The effect of B doping on the surface (111) reactivity has, in the present study, been inv...
This paper presents density functional theory results for the Li-adsorbed C(100)-(1x1):O system. Pre...