期刊
IEEE SENSORS JOURNAL
卷 15, 期 2, 页码 1068-1076出版社
IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/JSEN.2014.2356252
关键词
Conductometric; gold; nanoparticles; optical; platinum; thin films; ZnO
资金
- Italian PRIN Project Sviluppo di materiali con architettura gerarchica per sensori di ossidi di azoto a bassa temperatura per il monitoraggio ambientale [2009ALAX7Y]
The optical and conductometric responses of sol-gel-based ZnO thin films with embedded 5% mol. Au or Pt nanoparticles (NPs) have been compared at different operating temperatures, to assess the effect of noble metal additions on to H-2, CO and NO2 gases sensors response. The scanning electron microscopy and X-ray diffraction techniques have been utilized for morphological characterization of the crystal structures of the films after annealing at 400 degrees C for 30 min and the effect of Au and Pt NPs additions on crystallite growth is discussed. Au NPs additions is effective to enhance the optical response to H-2 and CO at 390 nm and in the 500-700-nm wavelength range at 300- degrees C temperature. No optical response to NO2 gas, even at low concentrations has been measured in the optical mode. The catalytic action of Pt NPs additions powerfully improves both the optical to H-2 and CO at 390 nm, and the conductometric gas responses. Detection limits as low as 20-ppb NO2 and 50-ppm H-2, in line with the best performances reported to the best of our knowledge in literature for ZnO-based sensors, have been measured in the conduction mode. Response times have been also compared, highlighting the positive effects played by Pt additions.
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