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悬浮石墨烯传感器,信号增强,噪声降低。

Suspended graphene sensors with improved signal and reduced noise.

机构信息

National Center for Nanoscience and Technology, 11 Beiyitiao Street, Zhongguancun, Beijing, People's Republic of China.

出版信息

Nano Lett. 2010 May 12;10(5):1864-8. doi: 10.1021/nl100633g.

Abstract

We report enhanced performance of suspended graphene field effect transistors (Gra-FETs) as sensors in aqueous solutions. Etching of the silicon oxide (SiO(2)) substrate underneath graphene was carried out in situ during electrical measurements of devices, which enabled systematic comparison of transport properties for same devices before and after suspension. Significantly, the transconductance of Gra-FETs in the linear operating modes increases 1.5 and 2 times when the power of low-frequency noise concomitantly decreases 12 and 6 times for hole and electron carriers, respectively, after suspension of graphene in solution from the SiO(2) substrate. Suspended graphene devices were further demonstrated as direct and real-time pH sensors, and complementary pH sensing with the same nanodevice working as either a p-type or n-type transistor was experimentally realized by offsetting the electrolyte gate potential in solution. Our results highlight the importance to quantify fundamental parameters that define resolution of graphene-based bioelectronics and demonstrate that suspended nanodevices represent attractive platforms for chemical and biological sensors.

摘要

我们报告了悬浮石墨烯场效应晶体管(Gra-FET)作为传感器在水溶液中的性能得到增强。在器件的电测量过程中,对石墨烯下方的氧化硅(SiO(2))衬底进行原位刻蚀,从而能够对悬浮前后的相同器件的传输特性进行系统比较。显著的是,当石墨烯从 SiO(2)衬底悬浮在溶液中后,在低频率噪声的功率同时分别降低 12 倍和 6 倍的情况下,空穴和电子载流子的 Gra-FET 的跨导分别增加 1.5 倍和 2 倍。悬浮石墨烯器件还进一步被证明为直接和实时的 pH 传感器,并且通过在溶液中偏移电解质门控电势,同纳米器件作为 p 型或 n 型晶体管互补 pH 传感在实验上得以实现。我们的结果强调了量化定义基于石墨烯的生物电子学分辨率的基本参数的重要性,并证明了悬浮纳米器件是化学和生物传感器的有吸引力的平台。

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