We report on a comparative study of transfer doping of hydrogenated single crystal diamond surface by insulators featured by high electron affinity, such as Nb2O5, WO3, V2O5, and MoO3. The low electron affinity Al2O3 was also investigated for comparison. Hole transport properties were evaluated in the passivated hydrogenated diamond films by Hall effect measurements, and were compared to un-passivated diamond films (air-induced doping). A drastic improvement was observed in passivated samples in terms of conductivity, stability with time, and resistance to high temperatures. The efficiency of the investigated insulators, as electron accepting materials in hydrogenated diamond surface, is consistent with their electronic structure. These sur...
Surface transfer doping of diamond has been demonstrated using MoO3 as a surface electron acceptor m...
Surface transfer doping of hydrogen-terminated diamond induced by high work function V2O5 oxide was ...
Surface transfer doping of hydrogen-terminated diamond induced by high work function V2O5 oxide was ...
We report on a comparative study of transfer doping of hydrogenated single crystal diamond surface b...
We report on a comparative study of transfer doping of hydrogenated single crystal diamond surface b...
We report on a comparative study of transfer doping of hydrogenated single crystal diamond surface b...
We report on a comparative study of transfer doping of hydrogenated single crystal diamond surface b...
Surface transfer doping of hydrogen-terminated diamond has been achieved utilising V2O5 as a surface...
Surface transfer doping of hydrogen-terminated diamond has been achieved utilising V2O5 as a surface...
Surface transfer doping of hydrogen-terminated diamond has been achieved utilising V2O5 as a surface...
Surface transfer doping of hydrogen-terminated diamond has been achieved utilising V2O5 as a surface...
Surface transfer doping of hydrogen-terminated diamond has been achieved utilising V2O5 as a surface...
Surface transfer doping of hydrogen-terminated diamond has been achieved utilising V2O5 as a surface...
Surface transfer doping of diamond has been demonstrated using MoO3 as a surface electron acceptor m...
Surface transfer doping of diamond has been demonstrated using MoO3 as a surface electron acceptor m...
Surface transfer doping of diamond has been demonstrated using MoO3 as a surface electron acceptor m...
Surface transfer doping of hydrogen-terminated diamond induced by high work function V2O5 oxide was ...
Surface transfer doping of hydrogen-terminated diamond induced by high work function V2O5 oxide was ...
We report on a comparative study of transfer doping of hydrogenated single crystal diamond surface b...
We report on a comparative study of transfer doping of hydrogenated single crystal diamond surface b...
We report on a comparative study of transfer doping of hydrogenated single crystal diamond surface b...
We report on a comparative study of transfer doping of hydrogenated single crystal diamond surface b...
Surface transfer doping of hydrogen-terminated diamond has been achieved utilising V2O5 as a surface...
Surface transfer doping of hydrogen-terminated diamond has been achieved utilising V2O5 as a surface...
Surface transfer doping of hydrogen-terminated diamond has been achieved utilising V2O5 as a surface...
Surface transfer doping of hydrogen-terminated diamond has been achieved utilising V2O5 as a surface...
Surface transfer doping of hydrogen-terminated diamond has been achieved utilising V2O5 as a surface...
Surface transfer doping of hydrogen-terminated diamond has been achieved utilising V2O5 as a surface...
Surface transfer doping of diamond has been demonstrated using MoO3 as a surface electron acceptor m...
Surface transfer doping of diamond has been demonstrated using MoO3 as a surface electron acceptor m...
Surface transfer doping of diamond has been demonstrated using MoO3 as a surface electron acceptor m...
Surface transfer doping of hydrogen-terminated diamond induced by high work function V2O5 oxide was ...
Surface transfer doping of hydrogen-terminated diamond induced by high work function V2O5 oxide was ...