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Resettable, low-temperature accumulation gas sensors based on hydrogenated diamond transducers

机译:基于氢化金刚石换能器的可重置,低温累积气体传感器

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Diamonds with hydrogenated surfaces feature a gas sensitivity which is mediated by a thin layer of BET-adsorbed water (BET: Brunauer, Emmet, Teller). Gases capable of undergoing acid-base reactions in liquid water are absorbed in the BET adsorbate, producing pH changes there and easily observable changes in the sub-surface hole conductivity of the diamond substrates. In this contribution we report on vapor sensing tests with diamond sensors which have been performed at normal ambient temperatures in a free-space environment. We show that such sensors exhibit an integrating dosimeter type response, which follows the temporal vapor concentrations with a time resolution of the order of one second or less. Upon saturation the sensors can be repeatedly reset to baseline by replacing contaminated BET adsorbates by fresh-water ones.
机译:具有氢化表面的金刚石具有气体敏感性,该气体敏感性由薄层吸附的水(BET:BRONAUER,EMET,TEAKER)介导的气体敏感性。能够在液态水中进行酸碱反应的气体被吸收在β吸附物中,产生pH变化,并且在金刚石基板的子表面空穴导电性中容易观察到的变化。在这一贡献中,我们报告了具有在自由空间环境中正常环境温度下进行的金刚石传感器的蒸汽传感试验。我们表明这种传感器表现出积分剂量仪类型响应,其遵循时间蒸汽浓度,时间蒸汽浓度为一秒或更短的时间。在饱和时,通过用淡水替换污染的BET吸附剂可以重复重置传感器到基线。

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