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Properties of polycrystalline gas sensors based on d.c. and a.c. electrical measurements

机译:基于dc的多晶气体传感器的特性和交流电气测量

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摘要

Electrical properties of polycrystalline gas sensors are analyzed by d.c. and a.c. measurements. d.c. electrical conductivity values compared with those obtained by admittance spectroscopy methods help to obtain a detailed 'on line' analysis of conductivity-modulated gas sensors. The electrical behaviour of grain boundaries is obtained and a new design of sensors can be achieved by enhancing the activity of surface states in the detecting operation. A Schottky barrier model is used to explain the grain boundary action under the presence of surrounding gases. The height of this barrier is a function of gas concentration due to the trapping of excess charge generated by gas adsorption at the interface. A comparison between this dependence, and a plot of the real and imaginary components of the admittance versus frequency at different gas concentrations, provides information on the different parameters that play a role in the conduction mechanisms. These methods have been applied to the design of a CO sensor based on tin oxide films for domestic purposes, the characteristics of which are presented.
机译:直流分析多晶气体传感器的电性能。和交流测量。直流电与通过导纳光谱法获得的电导率值相比,电导率值有助于获得对电导率调制气体传感器的详细“在线”分析。获得了晶界的电学行为,并且通过在检测操作中增强表面状态的活动性,可以实现传感器的新设计。肖特基势垒模型用于解释在周围气体存在下的晶界作用。该势垒的高度是气体浓度的函数,这是由于在界面处捕获了气体吸附所产生的过量电荷所致。比较这种依赖性,以及在不同气体浓度下导纳的实部和虚部与频率的关系图,可提供有关在传导机制中起作用的不同参数的信息。这些方法已应用于基于家用氧化锡膜的CO传感器的设计,并介绍了其特性。

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