Application of Iron Manganite Thick Films for Humidity Sensing

M. V. Nikolić, M. Lukovic, M. Dojcinovic, Z. Vasiljevic, N. Labus
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引用次数: 2

Abstract

Iron manganite (FeMnO3) thick film samples were obtained by screen printing four layers of thick film paste on alumina substrate with test PdAg electrodes. The paste was made by adding organic vehicles to iron manganite powder obtained by solid state synthesis of starting hematite $(\alpha-F{e}_{2}O_{3})$ and manganese carbonate (MnCO3)powders. SEM analysis of the sample surface revealed a porous structure with a uniform particle size distribution. The average resulting film thickness was 48 μ m. The change of impedance was monitored in a humidity chamber in the relative humidity range 30-90% at three working temperatures: 25, 50 and $75^{\circ}C$ in the frequency range 42 Hz to 1 MHz. With increase in relative humidity the measured impedance decreased, showing the greatest difference at lower frequency with a low time delay (below 3%)between absorption and desorption processes (hysteresis). The sensor response and recovery times were several seconds.
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铁锰酸盐厚膜在湿度传感中的应用
采用PdAg电极在氧化铝基体上丝网印刷制备了四层锰铁(FeMnO3)厚膜浆料。以赤铁矿$(\ α - f {e}_{2}O_{3})$和碳酸锰(MnCO3)粉为起始原料,固相合成铁锰矿粉,加入有机载物制备铁锰矿膏。对样品表面进行扫描电镜分析,发现样品表面具有均匀粒径分布的多孔结构。在相对湿度为30 ~ 90%的湿室中,在42 Hz ~ 1 MHz的频率范围内,分别在25、50和75^{\circ}C$三种工作温度下,监测薄膜的阻抗变化。随着相对湿度的增加,测得的阻抗减小,在较低的频率下,吸收和解吸过程(滞后)的延迟较低(低于3%),差异最大。传感器的响应和恢复时间为几秒。
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