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Volumn 2, Issue , 2009, Pages
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Hydrogen sensing based on laser ablated nanostructured WO3 thin films
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Author keywords
[No Author keywords available]
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Indexed keywords
BAND GAPS;
BURSTEIN-MOSS SHIFT;
DOPED FILMS;
ELECTRICAL RESISTIVITY;
EXPERIMENTAL CONDITIONS;
GAS SENSING PROPERTIES;
HIGH SENSITIVITY;
HYDROGEN-SENSING;
LOW OPERATING TEMPERATURE;
LOW SENSITIVITY;
METHANE GAS;
MICRO-RAMAN;
MICRO-STRUCTURAL;
NANO-STRUCTURED;
OPERATING TEMPERATURE;
OPTICAL MEASUREMENT;
OXYGEN AMBIENT;
PULSED LASER ABLATION;
ROOM TEMPERATURE;
SUBSTRATE TEMPERATURE;
TUNGSTEN OXIDE;
TUNGSTEN OXIDE FILMS;
VISIBLE SPECTRAL RANGE;
XRD;
ABLATION;
CHEMICAL DETECTION;
DOPING (ADDITIVES);
ELECTRIC CONDUCTIVITY;
GAS DETECTORS;
GAS SENSING ELECTRODES;
GLASS;
GRAIN GROWTH;
METHANE;
OPTICAL DATA PROCESSING;
OPTICAL PROPERTIES;
OXIDES;
OXYGEN;
PALLADIUM;
PULSED LASER APPLICATIONS;
PULSED LASERS;
STRUCTURAL ANALYSIS;
TEMPERATURE;
THIN FILMS;
TUNGSTEN;
TUNGSTEN COMPOUNDS;
X RAY DIFFRACTION;
OXIDE FILMS;
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EID: 77955417545
PISSN: 17578981
EISSN: 1757899X
Source Type: Conference Proceeding
DOI: 10.1088/1757-899X/2/1/012003 Document Type: Conference Paper |
Times cited : (4)
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References (5)
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