Author/Authors :
Simon، نويسنده , , Quentin and Barreca، نويسنده , , Davide and Bekermann، نويسنده , , Daniela and Gasparotto، نويسنده , , Alberto and Maccato، نويسنده , , Chiara and Comini، نويسنده , , Elisabetta and Gombac، نويسنده , , Valentina and Fornasiero، نويسنده , , Paolo and Lebedev، نويسنده , , Oleg I. and Turner، نويسنده , , Stuart and Devi، نويسنده , , Anjana and Fischer، نويسنده , , Roland A. and Va، نويسنده ,
Abstract :
Ag/ZnO nanocomposites were developed by a plasma-assisted approach. The adopted strategy exploits the advantages of Plasma Enhanced-Chemical Vapor Deposition (PE-CVD) for the growth of columnar ZnO arrays on Si(100) and Al2O3 substrates, in synergy with the infiltration power of the Radio Frequency (RF)-sputtering technique for the subsequent dispersion of different amounts of Ag nanoparticles (NPs). The resulting composites, both as-prepared and after annealing in air, were thoroughly characterized with particular attention on their morphological organization, structure and composition. For the first time, the above systems have been used as catalysts in the production of hydrogen by photo-reforming of alcoholic solutions, yielding a stable H2 evolution even by the sole use of simulated solar radiation. In addition, Ag/ZnO nanocomposites presented an excellent response in the gas-phase detection of H2, opening attractive perspectives for advanced technological applications.
Keywords :
Rf-sputtering , Hydrogen sensing , Hydrogen production , ZNO , AG , PE-CVD