Tungsten Trioxide Influencing Gas Sensing
- Details
- Category: Tungsten Information
- Published on Friday, 04 March 2016 15:08
Tungsten trioxide prepared by nanometer tungsten trioxide by the hydrothermal method and calcination treatment, which is characterized by higher non-symmetry axis and the second symmetry axis, the symmetry plane is more complicated. Monoclinic tungsten trioxide has a strong heterogeneity, which has three principal refractive indexes.
Taking Na2WO4·2H2O as raw materials, DL- malice acid as supplement aid, in this context, which can be synthesized in a three-dimensional spherical shape containing precursor (WO3·xH2O). It shows that the addition of malice acid dose of WO3·xH2O morphology and crystalline phase having a significant impact. Thus gas test shows that the optimum operating temperature of three samples reaches to 250 ℃, and square-shaped monoclinic tungsten trioxide shows the highest sensitivity, which mainly due to its unique and innovative three-dimensional porous structure. At 300 ℃, the optimum operating temperature is the lowest detectable concentration of material, which can reach 0.1ppm, material optimum calcination temperature is determined at500 ℃,the sensitivity of 5ppm acetone sample gas reaches to 7.9; in the relative humidity conditions , the sensitivity of 5ppm acetone resistance remains 5.72.
In tests of different gases (such as acetone, methanol, ethanol, ammonia, etc.) in the gas sensing of different working conditions, monoclinic tungsten trioxide gas shows high selectivity and sensitivity. Taking Na2WO4·2H2O as raw materials, which are used by Na2C2O4, Na2SO4 and H2C2O4 supplement. The hydrothermal conditions keep 24 hours at 180 ℃. Experimental results show that the solution plays the role in Na+、SO4-、C2O2-、HC2O4- ions and H2C2O4 nano WO3 crystal nucleation and growth process. The results show that three different adjuvant does not effect on crystal of product system. Subsequent tests show Na2WO4 assisting synthesis of WO3 nimrods at 320 ℃ for certain have concentrations to gas sensing, which mainly due to its high degree of dispersion and crystalline.
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