Junctions of silver-copper oxide and silver-zinc oxide, respectively were prepared within the pores of diameters, 20 nm, in anodic aluminium oxide membranes. Voltage-current characteristics were measured over the temperature range 373-573 K which showed rectification behaviour. Using the standard equation the difference between the work functions of the metal and the semiconductor was calculated. This showed a variation with the temperature of measurement. This is explained as arising due to the effect of pressure generated as a result of thermal expansion of the metallic phases concerned between the electrodes. This is consistent with the theoretical prediction of Fermi level shifting of the semiconductor within the bandgap as a function o...
This thesis describes the synthesis, structural properties, optical properties, and electronic prope...
We have studied the dependence of Schottky junction (I–V) characteristics on the metal contact size ...
We have studied the temperature-dependent (3-300 K) electrical resistance of metal nanowires and nan...
Junctions of silver-copper oxide and silver-zinc oxide, respectively were prepared within the pores ...
Abstract. Junctions of silver–copper oxide and silver–zinc oxide, respectively were prepared within ...
Zinc oxide nanoparticles (ZnO NP) used for the channel region in inverted coplanar setup in Thin Fil...
Anodic aluminum oxide membranes consisting of a well ordered hexagonal array of bottom-up nanopore w...
We form junctions between two ZnO nanoparticles. Such junctions are formed by electrostatic adsorpti...
A new class of electrodes with nanometer-scale contact spacing can be produced at the edge of patter...
The temperature dependence of the conductance and plateau length for the single-molecule junctions f...
It is shown that n-ZnO/H₂O-A/A⁻ junctions (A/A⁻ = [Co(bpy)₃]³⁺/²⁺ or [OsL₂L']³⁺/²⁺) display energeti...
An examination of the current-voltage characteristics of gold and palladium surface barriers on dege...
A concerted theoretical and experimental investigation of the silver/anatase hybrid nanocomposite, a...
We have measured the thermal expansion of Ni nanowires (NWs) electrodeposited into self-organized na...
Metal-semiconductor interfaces play a crucial role not only for regulating the electronic conduction...
This thesis describes the synthesis, structural properties, optical properties, and electronic prope...
We have studied the dependence of Schottky junction (I–V) characteristics on the metal contact size ...
We have studied the temperature-dependent (3-300 K) electrical resistance of metal nanowires and nan...
Junctions of silver-copper oxide and silver-zinc oxide, respectively were prepared within the pores ...
Abstract. Junctions of silver–copper oxide and silver–zinc oxide, respectively were prepared within ...
Zinc oxide nanoparticles (ZnO NP) used for the channel region in inverted coplanar setup in Thin Fil...
Anodic aluminum oxide membranes consisting of a well ordered hexagonal array of bottom-up nanopore w...
We form junctions between two ZnO nanoparticles. Such junctions are formed by electrostatic adsorpti...
A new class of electrodes with nanometer-scale contact spacing can be produced at the edge of patter...
The temperature dependence of the conductance and plateau length for the single-molecule junctions f...
It is shown that n-ZnO/H₂O-A/A⁻ junctions (A/A⁻ = [Co(bpy)₃]³⁺/²⁺ or [OsL₂L']³⁺/²⁺) display energeti...
An examination of the current-voltage characteristics of gold and palladium surface barriers on dege...
A concerted theoretical and experimental investigation of the silver/anatase hybrid nanocomposite, a...
We have measured the thermal expansion of Ni nanowires (NWs) electrodeposited into self-organized na...
Metal-semiconductor interfaces play a crucial role not only for regulating the electronic conduction...
This thesis describes the synthesis, structural properties, optical properties, and electronic prope...
We have studied the dependence of Schottky junction (I–V) characteristics on the metal contact size ...
We have studied the temperature-dependent (3-300 K) electrical resistance of metal nanowires and nan...