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首页> 外文期刊>Nanotechnology >Novel magnetic hydrogen sensing: a case study using antiferromagnetic haematite nanoparticles
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Novel magnetic hydrogen sensing: a case study using antiferromagnetic haematite nanoparticles

机译:新型氢磁感测:使用反铁磁赤铁矿纳米粒子的案例研究

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摘要

Hydrogen sensing is a critical component of safety to address widespread public perceptions of the hazards of production, storage, transportation and use of hydrogen in proposed future automobiles and in various other applications. A nanoscale magnetic hydrogen sensor is proposed based on the experimental observation of systematically varying the saturation magnetization and remanence of nanoscale antiferromagnetic haematite with hydrogen flow. The saturation magnetization and remanence of the nanoscale haematite sample showed an increase of one to two orders of magnitude in the presence of flowing hydrogen gas at concentrations in the 1-10% range and at 575 K, suggesting that a practical magnetic hydrogen sensor could be developed using this material and the novel magnetic sensing method. Thermogravimetric analysis of the haematite sample shows significant mass loss when hydrogen gas is introduced. X-ray diffraction and x-ray photoelectron spectroscopy studies ruled out any impurity phase formation as a result of gas-sample interaction. This work thus facilitates the use of the magnetic properties of an antiferromagnetic material as gas sensing parameters, thus exploring the concept of 'magnetic gas sensing'.
机译:氢感测是安全的重要组成部分,可解决公众对拟议的未来汽车和各种其他应用中氢的生产,储存,运输和使用的危害的广泛认识。基于实验观察结果,提出了一种纳米磁性氢传感器,其随着氢气流系统改变纳米反铁磁性赤铁矿的饱和磁化强度和剩磁。纳米赤铁矿样品的饱和磁化强度和剩磁表明,在浓度为1-10%且浓度为575 K的氢气中,存在流动的氢气时,其磁化强度增加了1-2个数量级,这表明实用的磁性氢传感器可以使用这种材料和新颖的磁感应方法开发的。赤铁矿样品的热重分析表明,引入氢气后质量损失显着。 X射线衍射和X射线光电子能谱研究排除了由于气体-样品相互作用而形成的任何杂质相。因此,这项工作有利于将反铁磁材料的磁性用作气体检测参数,从而探索了“磁性气体检测”的概念。

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