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Thin 2D: The New Dimensionality in Gas Sensing

机译:薄2D:气体传感的新维度

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Since the first report of graphene, thin two-dimensional (2D) nanomaterials with atomic or molecular thicknesses have attracted great research interest for gas sensing applications. This was due to the distinctive physical, chemical, and electronic properties related to their ultrathin thickness, which positively affect the gas sensing performances. This feature article discusses the latest developments in this field, focusing on the properties, preparation, and sensing applications of thin 2D inorganic nanomaterials such as single- or few-layer layered double hydroxides/transition metal oxides/transition metal dichalcogenides. Recent studies have shown that thin 2D inorganic nanomaterials could provide monitoring of harmful/toxic gases with high sensitivity and a low concentration detection limit by means of conductometric sensors operating at relatively low working temperatures. Promisingly, by using these thin 2D inorganic nanomaterials, it may open a simple way of improving the sensing capabilities of conductometric gas sensors.
机译:自石墨烯的首次报道以来,具有原子或分子厚度的薄二维(2D)纳米材料在气体传感应用中引起了极大的研究兴趣。这是由于与它们的超薄厚度有关的独特的物理,化学和电子特性,这对气体传感性能产生了积极的影响。这篇专题文章讨论了该领域的最新进展,重点关注薄2D无机纳米材料的特性,制备和传感应用,例如单层或多层双层氢氧化物/过渡金属氧化物/过渡金属二卤化碳。最近的研究表明,薄的2D无机纳米材料可以通过在相对较低的工作温度下运行的电导式传感器,以高灵敏度和低浓度检测极限来监测有害/有毒气体。很有希望地,通过使用这些薄的2D无机纳米材料,它可以为提高电导气体传感器的传感能力提供一种简单的方法。

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