ZnO nanorods grown by both high temperature vapour phase transport and low temperature chemical bath deposition are very promising sources for UV third harmonic generation. Material grown by both methods show comparable efficiencies, in both cases an order of magnitude higher than surface third harmonic generation at the quartz-air interface of a bare quartz substrate. This result is in stark contrast to the linear optical properties of ZnO nanorods grown by these two methods, which show vastly different PL efficiencies. The third harmonic generated signal is analysed using intensity dependent measurements and interferometric frequency resolved optical gating, allowing extraction of the laser pulse parameters. The comparable levels of effic...
ZnO nanorods arrays are synthesized over the different substrates namely; Indium Tin Oxide (ITO), Ka...
Zinc oxide (ZnO) nanorods have been extensively investigated, owing to their extraordinary applicati...
ZnO nanomaterials exhibit attractive optical properties that are important in the realm of catalysis...
ZnO nanorods grown by both high temperature vapour phase transport and low temperature chemical bath...
Efficient third harmonic generation was found in ZnO nanorod layers grown by phase transport and low...
[Portion of Introduction] In this chapter PL emission and THG by both CBD-grown and VPT-grown ZnO...
Multiphoton-absorption (MPA) induced ultraviolet (UV) luminescence of ZnO nanorods grown by vapor ph...
The objectives of this study are to grow and characterize the structural, optical, and electrical pr...
High-quality vertically aligned zinc oxide (ZnO) nanorods were successfully grown on seeded silicon ...
ZnO nanorods are widely used as UV detectors. Sensitivity of the UV detectors can be increased by gr...
PhDThis project explores the effect of materials processing on the optical, morphological, and elect...
ZnO is a direct wide bandgap semiconductor crystallizing in the wurtzite structure with a series of ...
ZnO nanorods have been grown by two inexpensive, solution-based, low-temperature methods: hydrotherm...
The near-ultraviolet photoluminescence of ZnO nanorods induced by multiphoton absorption of unamplif...
The near-ultraviolet photoluminescence of ZnO nanorods induced by multiphoton absorption of unamplif...
ZnO nanorods arrays are synthesized over the different substrates namely; Indium Tin Oxide (ITO), Ka...
Zinc oxide (ZnO) nanorods have been extensively investigated, owing to their extraordinary applicati...
ZnO nanomaterials exhibit attractive optical properties that are important in the realm of catalysis...
ZnO nanorods grown by both high temperature vapour phase transport and low temperature chemical bath...
Efficient third harmonic generation was found in ZnO nanorod layers grown by phase transport and low...
[Portion of Introduction] In this chapter PL emission and THG by both CBD-grown and VPT-grown ZnO...
Multiphoton-absorption (MPA) induced ultraviolet (UV) luminescence of ZnO nanorods grown by vapor ph...
The objectives of this study are to grow and characterize the structural, optical, and electrical pr...
High-quality vertically aligned zinc oxide (ZnO) nanorods were successfully grown on seeded silicon ...
ZnO nanorods are widely used as UV detectors. Sensitivity of the UV detectors can be increased by gr...
PhDThis project explores the effect of materials processing on the optical, morphological, and elect...
ZnO is a direct wide bandgap semiconductor crystallizing in the wurtzite structure with a series of ...
ZnO nanorods have been grown by two inexpensive, solution-based, low-temperature methods: hydrotherm...
The near-ultraviolet photoluminescence of ZnO nanorods induced by multiphoton absorption of unamplif...
The near-ultraviolet photoluminescence of ZnO nanorods induced by multiphoton absorption of unamplif...
ZnO nanorods arrays are synthesized over the different substrates namely; Indium Tin Oxide (ITO), Ka...
Zinc oxide (ZnO) nanorods have been extensively investigated, owing to their extraordinary applicati...
ZnO nanomaterials exhibit attractive optical properties that are important in the realm of catalysis...