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Hydrogen sensing characteristics of wet chemical synthesized tailored Mg0.5Zn0.5Fe2O4 nanostructures.

机译:湿化学合成定制Mg0.5Zn0.5Fe2O4纳米结构的氢感测特性。

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摘要

Solution based synthesis routes are attractive for making tailor-made nanostructures for electroceramics in a simple and cost-effective way. The gas sensing characteristics of semiconducting oxide gas sensors strongly depend on the adsorption and desorption of gases over the sensing surface. The morphology of the sensing element is known to influence the adsorption and desorption of gases and thereby the sensing performance of the material. In the present work a Pechini based solution synthesis route is adopted in order to synthesize magnesium zinc ferrite gas sensors in nanoparticle, nanotube and thin film forms. The hydrogen gas sensing characteristics of these sensing elements are compared as a function of test gas concentration and operating temperature. The influences of the morphology of the magnesium zinc ferrite sensing elements on the hydrogen sensing characteristics are discussed.
机译:基于溶液的合成路线对于以简单且经济高效的方式制造量身定制的电陶瓷纳米结构具有吸引力。半导体氧化物气体传感器的气体传感特性在很大程度上取决于传感表面上气体的吸附和解吸。已知传感元件的形态会影响气体的吸附和解吸,从而影响材料的传感性能。在本工作中,采用基于Pechini的溶液合成路线来合成纳米颗粒,纳米管和薄膜形式的镁锌铁氧体气体传感器。将这些传感元件的氢气传感特性作为测试气体浓度和工作温度的函数进行比较。讨论了镁锌铁氧体传感元件的形态对氢传感特性的影响。

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