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用单个原始石墨烯晶体管进行选择性气体传感。

Selective gas sensing with a single pristine graphene transistor.

机构信息

Center for Integrated Electronics and Department of Electrical, Computer and Systems Engineering, Rensselaer Polytechnic Institute, Troy, New York 12180, USA.

出版信息

Nano Lett. 2012 May 9;12(5):2294-8. doi: 10.1021/nl3001293. Epub 2012 Apr 23.

Abstract

We show that vapors of different chemicals produce distinguishably different effects on the low-frequency noise spectra of graphene. It was found in a systematic study that some gases change the electrical resistance of graphene devices without changing their low-frequency noise spectra while other gases modify the noise spectra by inducing Lorentzian components with distinctive features. The characteristic frequency f(c) of the Lorentzian noise bulges in graphene devices is different for different chemicals and varies from f(c) = 10-20 Hz to f(c) = 1300-1600 Hz for tetrahydrofuran and chloroform vapors, respectively. The obtained results indicate that the low-frequency noise in combination with other sensing parameters can allow one to achieve the selective gas sensing with a single pristine graphene transistor. Our method of gas sensing with graphene does not require graphene surface functionalization or fabrication of an array of the devices with each tuned to a certain chemical.

摘要

我们表明,不同化学物质的蒸气会对石墨烯的低频噪声谱产生明显不同的影响。在一项系统研究中发现,一些气体在不改变石墨烯器件低频噪声谱的情况下改变其电阻,而另一些气体则通过引入具有独特特征的洛伦兹分量来改变噪声谱。在不同的化学物质中,石墨烯器件中洛伦兹噪声凸起的特征频率 f(c) 是不同的,对于四氢呋喃和氯仿蒸气,分别为 f(c) = 10-20 Hz 和 f(c) = 1300-1600 Hz。所得结果表明,低频噪声与其他传感参数相结合,可以实现使用单个原始石墨烯晶体管进行选择性气体传感。我们使用石墨烯进行气体传感的方法不需要对石墨烯表面进行功能化,也不需要制造具有每个特定化学物质调谐的设备阵列。

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