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Multigas sensor based on micro machined hotplates for CO and Oinf2/inf detection using catalytically modified nano-SnOinf2/inf

机译:MultiGAS传感器基于微机械加工的CO和O< INF& 2& / inf& 检测使用催化改性的纳米SnO& Inf& 2& / inf&

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SnO2 nanostructures have been loaded with different amount and types of catalysts. These ones work as active filters that functionally response in a very different way against carbon monoxide and oxygen. The micro machined hotplates contain different thermally and electrically independent membranes integrated in the same chip allowing that one of the active sensing materials is turned to present a higher sensitivity to CO than to O2, whereas the other sensor is mainly turned for detecting O2 variations without any cross talk of temperature. The resistance data obtained from this type of combined sensors as a function of CO and O2 concentrations has been parameterized and modulated for the direct deduction of the both gas concentrations. So, two functions are calculated for the quantification of CO/O2 gas mixtures. A comparison with a reference oxygen sensor based on a perovskite type barium stannate layer of BaSnO3 working as oxygen gas sensor at high temperature and not presenting interfering crosstalk with the CO concentration is also discussed.
机译:SnO2纳米结构已装载不同的量和类型的催化剂。这些产品作为有源过滤器,以非常不同的方式对抵抗一氧化碳和氧气的响应。微机加工的热板含有不同的热和电独立膜,其集成在相同的芯片中,允许其中一个有效感测材料转动到对CO的敏感性较高,而另一个传感器主要转动用于检测O2变化而没有任何越过温度。从这种类型的组合传感器获得的电阻数据作为CO和O2浓度的函数进行了参数化和调制用于两种气体浓度的直接扣除。因此,计算两个功能以用于定量CO / O2气体混合物。还讨论了基于基于钙钛矿型Barno3的基于Perovskite型钡静体层的参考氧传感器的比较。还讨论了在高温下作为氧气传感器的氧气传感器而不是呈现与CO浓度的干扰串扰。

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