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Low Power Resistive Oxygen Sensor Based on Sonochemical SrTi0.6Fe0.4O2.8 (STFO40)

机译:基于声化学SrTi0.6Fe0.4O2.8(STFO40)的低功耗电阻式氧气传感器

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摘要

The current paper reports on a sonochemical synthesis method for manufacturing nanostructured (typical grain size of 50 nm) SrTi0.6Fe0.4O2.8 (Sono-STFO40) powder. This powder is characterized using X ray-diffraction (XRD), Mössbauer spectroscopy and Scanning Electron Microscopy (SEM), and results are compared with commercially available SrTi0.4Fe0.6O2.8 (STFO60) powder. In order to manufacture resistive oxygen sensors, both Sono-STFO40 and STFO60 are deposited, by dip-pen nanolithography (DPN) method, on an SOI (Silicon-on-Insulator) micro-hotplate, employing a tungsten heater embedded within a dielectric membrane. Oxygen detection tests are performed in both dry (RH = 0%) and humid (RH = 60%) nitrogen atmosphere, varying oxygen concentrations between 1% and 16% (v/v), at a constant heater temperature of 650 °C. The oxygen sensor, based on the Sono-STFO40 sensing layer, shows good sensitivity, low power consumption (80 mW), and short response time (25 s). These performance are comparable to those exhibited by state-of-the-art O2 sensors based on STFO60, thus proving Sono-STFO40 to be a material suitable for oxygen detection in harsh environments.
机译:当前的论文报道了一种用于制造纳米结构(典型晶粒尺寸为50 nm)SrTi0.6Fe0.4O2.8(Sono-STFO40)粉末的声化学合成方法。使用X射线衍射(XRD),穆斯堡尔光谱和扫描电子显微镜(SEM)对这种粉末进行表征,并将结果与​​市售SrTi0.4Fe0.6O2.8(STFO60)粉末进行比较。为了制造电阻式氧气传感器,使用浸入式纳米光刻(DPN)方法将SOno-STFO40和STFO60沉积在SOI(绝缘体上硅)微热板上,采用嵌入在介电膜内的钨加热器。在干燥的(RH = 0%)和潮湿的(RH = 60%)氮气环境中,在恒定的650°C加热器温度下,氧气浓度在1%和16%(v / v)之间变化,从而进行氧气检测测试。基于Sono-STFO40传感层的氧气传感器显示出良好的灵敏度,低功耗(80 mW)和短响应时间(25 s)。这些性能可与基于STFO60的最先进的O2传感器所展现的性能相媲美,从而证明Sono-STFO40是适合在恶劣环境中进行氧气检测的材料。

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