Title :
Enhancement of Ethanol Sensing Properties by Alloying
With ZnO Tetrapods
Author :
Santhaveesuk, Theerapong ; Wongratanaphisan, Duangmanee ; Choopun, Supab
Author_Institution :
Dept. of Phys. & Mater. Sci., Chiang Mai Univ., Chiang Mai, Thailand
Abstract :
The TixZn1-xO tetrapods were synthesized using simple thermal oxidation method from Zn and TiO2 mixture. The tetrapods exhibited single crystalline hexagonal wurtzite structure with the prefer growth direction of [0002] along the legs. The sensors based on TixZn1-xO tetrapods were fabricated and investigated the ethanol sensing properties. The FE-SEM, HRTEM, SAED, XRD, and RS results suggested that TixZn1-xO alloy was formed with a slightly decrease of c-axis lattice parameter. The decrease of sensor resistance under ethanol atmosphere was observed and suggested that the TixZn1-xO tetrapods possessed n-type property of semiconductor similar to ZnO. The TixZn1-xO tetrapod sensors exhibited higher sensitivity than that of pure ZnO tetrapod sensors for entire ethanol concentration with optimum operating temperature of 300°C. Thus, the enhancement of sensitivity due to alloying TiO2 with the ZnO tetrapods was observed and maybe explained by an increase of adsorbed oxygen ions due to substitution of Ti atom into Zn atom. Also, the slope value of the plot between log(S-1) and log C suggested that adsorbed oxygen ion species at the surface of the TixZn1-xO tetrapods was O2- which was same as pure ZnO tetrapods. Finally, these results have an important implication for a development of ethanol sensors based on metal oxide semiconductors for alcohol breath analyzer.
Keywords :
X-ray diffraction; adsorption; alloying; chemical exchanges; chemical variables measurement; gas sensors; organic compounds; oxidation; scanning electron microscopy; titanium compounds; transmission electron microscopy; zinc compounds; FE-SEM; HRTEM; SAED; TiO2; XRD; ZnO; alcohol breath analyzer; c-axis lattice parameter; crystalline hexagonal wurtzite structure; ethanol sensor; metal oxide semiconductor; n-type property; oxygen ions; temperature 300 C; tetrapod sensor; thermal oxidation method; Alloying; Crystallization; Ethanol; Lattices; Leg; Oxidation; Temperature sensors; Titanium alloys; X-ray scattering; Zinc oxide; Alloying; gas sensor; sensitivity; tetrapods;
Journal_Title :
Sensors Journal, IEEE
DOI :
10.1109/JSEN.2009.2036048