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Vanadium oxide nanostructured thin films prepared by Aerosol Spray Pyrolysis for gas sensing and thermochromic applications

机译:由气溶胶喷雾热解制备气体感应和热致变色应用的氧化钒纳米结构薄膜

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Vanadium oxide (VxOy) nanostructured films were prepared by Aerosol Spray Pyrolysis technique with different concentrations of precursor solution (0.005 M, 0.01 M, 0.02 M), using ammonium metavanadate (NH4VO3) as precursor. The deposition was carried out onto glass substrates (Corning glass) at two different substrate temperatures (300 degrees C and 400 degrees C). Furthermore, oxalic acid was added to the precursor solution in order to grow the thermochromic VO2(M) monoclinic phase via reduction of the Vanadium oxides in which Vanadium is in a higher oxidizing state. All films were characterized by X-Ray Diffraction technique and UV/Vis/NIR spectroscopy to identify their structural and optical properties, respectively. V2O5 films were tested against ozone, having a sensitivity of 29% in ultra-low concentration of 5ppb ozone, at room temperature. Moreover, nanostructured VO2 films appeared to be thermochromic, having an IR-switching of about 5% at lambda = 2500 nm, upon heating.
机译:通过气溶胶喷雾热解技术制备氧化钒(Vxoy)纳米结构薄膜,其具有不同浓度的前体溶液(0.005M,0.01M,0.02M),使用甲烷酸铵(NH4VO3)作为前体。 将沉积在两个不同的衬底温度(300℃和400℃)的玻璃基板上进行到玻璃基板上。 此外,将草酸加入前体溶液中,以通过还原钒在更高的氧化态的钒氧化物的氧化物中生长热致变色VO2(M)单胶相。 所有薄膜的特征在于X射线衍射技术和UV / VI / NIR光谱,分别识别它们的结构和光学性质。 将V2O5薄膜对臭氧进行测试,在室温下以超低浓度的5ppb臭氧的敏感性为29%。 此外,纳米结构的VO2薄膜似乎是热致变色的,在加热时在λ= 2500nm时具有约5%的IR切换。

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