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Synthesis and characterization of cobalt antimonate nanostructures and their study as potential CO and CO_2 sensor at low temperatures

机译:锑酸钴纳米结构的合成,表征及其在低温下作为潜在的CO和CO_2传感器的研究

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摘要

Cobalt antimonate (CoSb~(2)O~(6)) nanostructures were prepared using the microwave-assisted colloidal method, employing cobalt nitrate, antimony chloride, ethylenediamine and ethyl alcohol. The solvent was evaporated through microwave radiation at 140 W. The precursor material was dried at 200 °C and then calcined at 300, 400, 500, and 600 °C in static air. The crystalline phase of the material was found at 600 °C by means of X-ray diffraction. Morphology was analyzed through scanning electron microscopy, finding octahedral particles with an edge length between 3 and 50 µm, and other particles of nanometric size. The size of these irregularly shaped nanoparticles was estimated of ~ 17.6 nm by means of transmission electron microscopy. UV–vis analyses of semiconducting powders revealed a forbidden band of ~ 1.82 eV. For the gas detection experiments, thick films and pellets were made of CoSb~(2)O~(6)powders (600 °C). The tests were carried out in air, CO, and CO~(2)atmospheres at different gas concentrations and operating temperatures. The cobalt antimonate nanoparticles showed high sensitivity at 300 °C and 300 ppm of CO, and a good dynamic response at 100 ppm of CO~(2).
机译:采用微波辅助胶体法,利用硝酸钴,氯化锑,乙二胺和乙醇,制备了锑酸钴(CoSb〜(2)O〜(6))纳米结构。通过140 W的微波辐射蒸发溶剂。将前体材料在200°C下干燥,然后在300、400、500和600°C的静态空气中煅烧。通过X射线衍射发现该材料的结晶相在600℃。通过扫描电子显微镜对形态进行分析,发现边缘长度在3至50 µm之间的八面体颗粒以及其他纳米尺寸的颗粒。这些不规则形状的纳米粒子的大小通过透射电子显微镜估计约为17.6 nm。半导体粉末的紫外可见分析表明,禁带为〜1.82 eV。为了进行气体检测实验,用CoSb〜(2)O〜(6)粉末(600°C)制成厚膜和颗粒。测试是在空气,CO和CO〜(2)大气中以不同的气体浓度和工作温度进行的。锑酸钴纳米颗粒在300°C和300ppm CO的条件下显示出高灵敏度,在100ppm CO〜(2)的条件下具有良好的动态响应。

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