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Hydrogen Sensing using Impedance Measurements of Nanocrystalline Palladium

机译:利用纳米晶钯的阻抗测量氢气感应

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The objective of this work has been the development of a low cost method of sensing explosive levels of molecular hydrogen gas. The challenge in designing an inexpensive sensor has been to implement an inexpensive manufacturing process with a repeatable and accurate response. A sensor design has been implemented which uses a ceramic based interdigitated structure containing a thin layer of vacuum-sputtered palladium. Early tests with this structure showed that testing using direct current meters resulted in a catastrophic failure at or around 4% H_2. Reassessment of this method determined that alternating current excitation and impedance spectroscopy methods provided the basis for a high reliability device. The palladium sensing film required an initial pretreatment of H_2. Upon initial pretreatment, the sensor was tested and cycled from 9% to 33% and found to be repeatable.
机译:这项工作的目的是开发一种感测分子氢气爆炸水平的低成本方法。设计廉价传感器的挑战已经实现了具有可重复和准确的响应的廉价制造过程。已经实施了传感器设计,其使用含有薄层真空溅射钯的陶瓷的互氮结构。利用这种结构的早期测试表明,使用直流计量的测试导致灾难性的失效或约4%H_2。重新评估该方法确定了交流激励和阻抗光谱方法为高可靠性装置提供了基础。钯感测膜需要初始预处理H_2。在初始预处理后,将传感器测试并从9%循环至33%,发现可重复。

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