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石墨烯生物晶体管的热噪声极限测定。

Determination of the Thermal Noise Limit of Graphene Biotransistors.

机构信息

†Department of Physics, Linfield College, McMinnville, Oregon 97128, United States.

‡Department of Physics, Oregon State University, Corvallis, Oregon 97331, United States.

出版信息

Nano Lett. 2015 Aug 12;15(8):5404-7. doi: 10.1021/acs.nanolett.5b01788. Epub 2015 Jul 20.

Abstract

To determine the thermal noise limit of graphene biotransistors, we have measured the complex impedance between the basal plane of single-layer graphene and an aqueous electrolyte. The impedance is dominated by an imaginary component but has a finite real component. Invoking the fluctuation-dissipation theorem, we determine the power spectral density of thermally driven voltage fluctuations at the graphene/electrolyte interface. The fluctuations have 1/f(p) dependence, with p = 0.75-0.85, and the magnitude of fluctuations scales inversely with area. Our results explain noise spectra previously measured in liquid-gated suspended graphene devices and provide realistic targets for future device performance.

摘要

为了确定石墨烯生物晶体管的热噪声极限,我们测量了单层石墨烯的基面与水基电解质之间的复阻抗。该阻抗主要由虚部主导,但实部不为零。根据涨落耗散定理,我们确定了石墨烯/电解质界面处热驱动电压涨落的功率谱密度。涨落具有 1/f(p)的依赖性,其中 p = 0.75-0.85,且涨落的幅度与面积成反比。我们的结果解释了先前在液栅悬浮石墨烯器件中测量的噪声谱,并为未来器件性能提供了现实的目标。

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