Novel insight on the local surface properties of ZnO nanowires (NW) deposited by the evaporation-condensation method on Ag-covered Si substrates is proposed, based on the results of comparative studies by using the scanning electron microscopy (SEM), x-ray photoemission spectroscopy (XPS) and thermal desorption spectroscopy (TDS) methods, respectively. SEM studies showed that ZnO nanowires (nanoribbons) are mostly isolated and irregular, having the average length μm and the average at the level of tens nm, respectively. Our XPS studies confirmed their evident surface non-stoichiometry, combined with strong C surface contaminations, which was related to the existence of oxygen-deficient regions. Additionally, TDS studies showed that undesire...
The perfect crystalline nature along with a defect ridden surface controls the electrical and magnet...
DoctorUnderstanding the surface reaction mechanisms of ZnO is essential for various kinds of applica...
International audienceZnO nanowires were grown on sapphire substrates using metalorganic chemical va...
Abstract Novel insight on the local surface properties of ZnO nanowires (NW) deposite...
ZnO nanostructure materials have attracted interests again when researchers found they had quite dif...
In this paper we investigate the surface chemistry, including surface contaminations, of SnO2 nanowi...
Surface defects are commonly believed to be fundamentally important to gas-sensor performance. We ex...
The present article reports the growth mechanism of zinc oxide (ZnO) nanowires grown on silicon subs...
AbstractWe investigated vapour-phase-epitaxy grown ZnO NWs on a Si substrate by SEM. SEM investigati...
In this paper, zinc oxide (ZnO) nanowires were synthesized by thermal oxidation method of zinc scrap...
Reactions of ZnO nanowires (NWs) with atomic hydrogen were investigated with temperature-programmed ...
The microstructural, morphological, optical and water-adsorption properties of nanocrystalline ZnO t...
ZnO nanowires were obtained through evaporation of zinc powders under a low temperature of 400 degre...
Zinc oxide (ZnO) is a II-VI semiconductor whose wide direct bandgap (3.37 eV) and large exciton bind...
The understanding of surfaces of materials is of crucial importance to all of us. Considering nanocr...
The perfect crystalline nature along with a defect ridden surface controls the electrical and magnet...
DoctorUnderstanding the surface reaction mechanisms of ZnO is essential for various kinds of applica...
International audienceZnO nanowires were grown on sapphire substrates using metalorganic chemical va...
Abstract Novel insight on the local surface properties of ZnO nanowires (NW) deposite...
ZnO nanostructure materials have attracted interests again when researchers found they had quite dif...
In this paper we investigate the surface chemistry, including surface contaminations, of SnO2 nanowi...
Surface defects are commonly believed to be fundamentally important to gas-sensor performance. We ex...
The present article reports the growth mechanism of zinc oxide (ZnO) nanowires grown on silicon subs...
AbstractWe investigated vapour-phase-epitaxy grown ZnO NWs on a Si substrate by SEM. SEM investigati...
In this paper, zinc oxide (ZnO) nanowires were synthesized by thermal oxidation method of zinc scrap...
Reactions of ZnO nanowires (NWs) with atomic hydrogen were investigated with temperature-programmed ...
The microstructural, morphological, optical and water-adsorption properties of nanocrystalline ZnO t...
ZnO nanowires were obtained through evaporation of zinc powders under a low temperature of 400 degre...
Zinc oxide (ZnO) is a II-VI semiconductor whose wide direct bandgap (3.37 eV) and large exciton bind...
The understanding of surfaces of materials is of crucial importance to all of us. Considering nanocr...
The perfect crystalline nature along with a defect ridden surface controls the electrical and magnet...
DoctorUnderstanding the surface reaction mechanisms of ZnO is essential for various kinds of applica...
International audienceZnO nanowires were grown on sapphire substrates using metalorganic chemical va...