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具有超高信噪比的金属 TiCT MXene 气体传感器。

Metallic TiCT MXene Gas Sensors with Ultrahigh Signal-to-Noise Ratio.

机构信息

A.J. Drexel Nanomaterials Institute, Drexel University , Philadelphia, Pennsylvania 19104, United States.

出版信息

ACS Nano. 2018 Feb 27;12(2):986-993. doi: 10.1021/acsnano.7b07460. Epub 2018 Jan 25.

Abstract

Achieving high sensitivity in solid-state gas sensors can allow the precise detection of chemical agents. In particular, detection of volatile organic compounds (VOCs) at the parts per billion (ppb) level is critical for the early diagnosis of diseases. To obtain high sensitivity, two requirements need to be simultaneously satisfied: (i) low electrical noise and (ii) strong signal, which existing sensor materials cannot meet. Here, we demonstrate that 2D metal carbide MXenes, which possess high metallic conductivity for low noise and a fully functionalized surface for a strong signal, greatly outperform the sensitivity of conventional semiconductor channel materials. TiCT MXene gas sensors exhibited a very low limit of detection of 50-100 ppb for VOC gases at room temperature. Also, the extremely low noise led to a signal-to-noise ratio 2 orders of magnitude higher than that of other 2D materials, surpassing the best sensors known. Our results provide insight in utilizing highly functionalized metallic sensing channels for developing highly sensitive sensors.

摘要

实现固态气体传感器的高灵敏度可以实现对化学物质的精确检测。特别是,在十亿分之一(ppb)的水平上检测挥发性有机化合物(VOC)对于疾病的早期诊断至关重要。为了获得高灵敏度,需要同时满足两个要求:(i)低电噪声和(ii)强信号,而现有传感器材料无法满足这两个要求。在这里,我们证明了二维金属碳化物 MXenes 具有低噪声的高金属导电性和强信号的全功能化表面,大大超过了传统半导体通道材料的灵敏度。TiCT MXene 气体传感器在室温下对 VOC 气体表现出非常低的检测极限为 50-100 ppb。此外,极低的噪声导致信噪比比其他二维材料高 2 个数量级,超过了已知的最佳传感器。我们的研究结果为利用功能化的金属传感通道开发高灵敏度传感器提供了新的思路。

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