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Tailoring ammonia gas sensing performance of La3+-doped copper cadmium ferrite nanostructures

机译:LA3 +铜镉铁氧体纳米结构剪裁氨气传感性能

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摘要

Lanthanum-doped copper-cadmium ferrite (La-CCF) nanocrystallite pallet sensors are synthesized using a sol-gel auto-combustion method and envisaged in ammonia gas sensing applications. The structure and morphology measurements of the La-CCF sensors are investigated by X-ray diffraction (XRD) pattern and scanning electron microscopy images. The single tetragonal spinel phase is confirmed from X-ray diffraction analysis. A secondary phase of LaO3 is observed when La doping level is >= 0.1 observed. The surface appearance of the La-CCF sensor changes from irregular polished course to irregular elevation type crystallites on La addition. The room-temperature gas sensing measurements suggest a better selectivity and sensitivity of La-CCF sensors for ammonia gas among several tested target gases. The sensing performance increases with La3+-doping level from x = 0.0 to 0.1 due to lattice defect introduced by a large sized La ion substitution.
机译:使用溶胶 - 凝胶自燃方法合成镧掺杂铜 - 镉铁氧体(La-CCF)纳米晶托盘传感器,并在氨气传感应用中设想。 通过X射线衍射(XRD)图案和扫描电子显微镜图像研究了LA-CCF传感器的结构和形态测量。 从X射线衍射分析证实单四方尖晶石相。 观察LAO3的二次相,当La掺杂水平>观察到0.1时,观察到。 LA-CCF传感器的表面外观从不规则的抛光过程变为在LA添加上的不规则升降型微晶。 室温气体传感测量表明,在几种测试的目标气体中,La-CCF传感器的选择性和灵敏度为氨气。 由于通过大型LA离子替代引入的晶格缺陷,感测性能随着LA3 + - 掺杂水平而增加。

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