| Literature DB >> 22163623 |
Chatchawal Wongchoosuk1, Anurat Wisitsoraat, Ditsayut Phokharatkul, Adisorn Tuantranont, Teerakiat Kerdcharoen.
Abstract
In this work we have fabricated hydrogen gas sensors based on undopn>ed and 1 wt% multi-walledEntities:
Keywords: E-beam evaporation; WO3; carbon nanotube; hydrogen sensor; nanochannels
Mesh:
Substances:
Year: 2010 PMID: 22163623 PMCID: PMC3231162 DOI: 10.3390/s100807705
Source DB: PubMed Journal: Sensors (Basel) ISSN: 1424-8220 Impact factor: 3.576
Figure 1.SEM images of the produced MWCNTs grown by the CVD process.
Figure 2.High resolution TEM image of the produced MWCNT grown by the CVD process.
Figure 3.SEM image of MWCNT-doped WO3 thin films on alumina substrate.
Figure 4.(a) High-resolution TEM image and (b) corresponding selected area diffraction pattern of MWCNT-doped WO3 thin film.
Figure 5.Sensing response to H2 (1,000 ppm) at different operating temperatures.
Figure 6.Sensing response of the undoped WO3 and MWCNT-doped WO3 thin films to high H2 concentrations (5,000–50,000 ppm) at the operating temperature of 250 °C.
Figure 7.Sensing response of MWCNT-doped WO3 thin film at the operating temperature of 350 °C to various concentrations of different gas vapors.