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High performance acetone sensor based on gamma-Fe2O3/AI-ZnO nanocomposites

机译:基于Gamma-Fe2O3 / Ai-ZnO纳米复合材料的高性能丙酮传感器

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Ternary nanocomposites made of gamma-iron oxide and aluminum-doped zinc oxide (gamma-Fe2O3/AI-ZnO NCS), with different metal oxides ratio (0%-100%) were prepared through a solvothermal sol-gel process. The synthesized materials were characterized by x-ray diffraction, UV-vis spectroscopy, photoluminescence (PL), scanning electron microscope and BET analysis. Characterization results demonstrated that the ternary gamma-Fe2O3/Al-ZnO NCS are mainly constituted by gamma-Fe2O3 and Al-ZnO individual phases, while structural and physical properties like surface area, pore size, optical band gap, PL and electrical conductivity were deeply affected by the composition of nanocomposite. The synthesized gamma-Fe2O3/Al-ZnO NCs were employed to prepare conductometric gas sensors, then their sensing performances toward acetone were also investigated. Results revealed enhanced sensing performance of nanocomposites than both pure gamma-Fe2O3 and Al-ZnO phases. In particular, the gamma-Fe2O3(33%)/Al-ZnO based gas sensor showed the best sensing properties, like a high response of R-air/R-gas = 29, a short response time of 3 s, in addition to an improved selectivity toward acetone versus ethanol at an operating temperature of 200 degrees C. Overall, ternary gamma-Fe2O3/Al-ZnO NCs appear to be promising for the development of conductometric acetone sensors.
机译:通过溶剂热溶胶 - 凝胶制备由γ-氧化铁和铝掺杂氧化锌(γ-Fe2O3 / Ai-ZnO NCS)制成的三元纳米复合材料(γ-Fe2O3 / Ai-ZnO NCS)。合成材料的特征在于X射线衍射,UV-Vis光谱,光致发光(PL),扫描电子显微镜和BET分析。表征结果表明,三元γ-Fe2O3 / Al-ZnO NC主要由γ-Fe2O3和Al-ZnO个体相构成,而结构和物理性质如表面积,孔径,光带隙,PL和电导率是深度的受纳米复合材料组成的影响。采用合成的γ-Fe 2 O 3 / Al-ZnO NC制备导电气体传感器,然后还研究了它们对丙酮的感测性能。结果表明,纳米复合材料的增强性能提高了纳米复合物的性能而不是纯γ-Fe 2 O 3和Al-ZnO相。特别地,γ-Fe2O3(33%)/ Al-ZnO基气体传感器显示出最佳的感测性,如R-Air / R气= 29的高响应,除了3秒的短响应时间在200℃的工作温度下改善对丙酮与乙醇的选择性。总体而言,三元γ-Fe2O3 / Al-ZnO NCs似乎是对电导致丙酮传感器的开发的有望。

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