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Hydrogen sensing characteristics from carbon nanotube field emissions

机译:从碳氢传感特性纳米管领域的排放

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An innovative hydrogen sensing concept is demonstrated based on the field emission from multi-walled carbon nanotubes, where the low emission currents rise in proportion to hydrogen partial pressures above 10(-9) Torr. Experimental and first principles studies reveal that the sensing mechanism is attributed to the effective work function reduction from dissociative hydrogen chemisorption. The embedded Ni catalyst would assist both the hydrogen dissociation and work function reduction. This technique is promising to build miniature low cost hydrogen sensors for multiple applications. This work is valuable for studies of nanocarbon-gas reaction mechanisms and the work function properties in adsorption related applications, including field emission, hydrogen storage, energy cells, and gas sensing.
机译:一个创新的氢传感概念证明了基于场致发射多壁碳纳米管,低发射电流成比例的增加氢分压高于10(9)托。研究表明,和第一原则传感机制归因于有效功函数减少的离解氢的化学吸收作用。将协助离解氢和功函数的减少。承诺建立小型低成本氢气传感器用于多个应用程序。有价值的研究nanocarbon-gas反应机制和功函数的属性吸附相关的应用程序,包括字段发射、储氢、能源电池,和天然气传感。

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