International audienceThe simultaneous co-doping of ZnO nanowires grown by chemical bath deposition is of high interest for a large number of engineering devices, but the process conditions required and the resulting physicochemical processes are still largely unknown. Herein, we show that the simultaneous co-doping of ZnO nanowires with Al and Ga following the addition of Al(NO3)3 and Ga(NO3)3 in the chemical bath operates in a narrow range of conditions in the high-pH region, where the adsorption processes of respective Al(OH)4– and Ga(OH)4− complexes on the positively charged m-plane sidewalls are driven by attractive electrostatic forces. The structural morphology and properties of ZnO nanowires are significantly affected by the co-dopi...
International audienceThe ability to form ZnO nanowire arrays with dedicated morphological propertie...
ZnO nanorods were grown on similar to 50-nm-thick transparent conductive oxide thin films by hydroth...
The metal–organic chemical vapor deposition growth of various Ga-doped ZnO nanostructures for plasmo...
International audienceThe simultaneous co-doping of ZnO nanowires grown by chemical bath deposition ...
International audienceThe simultaneous cationic and anionic co-doping of ZnO nanowires grown by chem...
International audienceMastering the properties of ZnO nanowires grown by the low temperature chemica...
International audienceThe elucidation of the fundamental processes in aqueous solution during the ch...
International audienceWater pollution represents one of the most challenging ecological threats huma...
International audienceZnO nanowires grown by chemical bath deposition (CBD) are of high interest, bu...
Mastering the properties of ZnO nanowires grown by the low temperature chemical bath deposition (CBD...
International audienceThe controlled incorporation of dopants like copper into ZnO nanowires (NWs) g...
International audienceZnO nanowires (NWs) grown by chemical bath deposition (CBD) have received grea...
International audienceThe ability to form ZnO nanowire arrays with dedicated morphological propertie...
ZnO nanorods were grown on similar to 50-nm-thick transparent conductive oxide thin films by hydroth...
The metal–organic chemical vapor deposition growth of various Ga-doped ZnO nanostructures for plasmo...
International audienceThe simultaneous co-doping of ZnO nanowires grown by chemical bath deposition ...
International audienceThe simultaneous cationic and anionic co-doping of ZnO nanowires grown by chem...
International audienceMastering the properties of ZnO nanowires grown by the low temperature chemica...
International audienceThe elucidation of the fundamental processes in aqueous solution during the ch...
International audienceWater pollution represents one of the most challenging ecological threats huma...
International audienceZnO nanowires grown by chemical bath deposition (CBD) are of high interest, bu...
Mastering the properties of ZnO nanowires grown by the low temperature chemical bath deposition (CBD...
International audienceThe controlled incorporation of dopants like copper into ZnO nanowires (NWs) g...
International audienceZnO nanowires (NWs) grown by chemical bath deposition (CBD) have received grea...
International audienceThe ability to form ZnO nanowire arrays with dedicated morphological propertie...
ZnO nanorods were grown on similar to 50-nm-thick transparent conductive oxide thin films by hydroth...
The metal–organic chemical vapor deposition growth of various Ga-doped ZnO nanostructures for plasmo...