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Biosensing near the neutrality point of graphene

机译:石墨烯中性点附近的生物传感

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摘要

Over the past decade, the richness of electronic properties of graphene has attracted enormous interest for electrically detecting chemical and biological species using this two-dimensional material. However, the creation of practical graphene electronic sensors greatly depends on our ability to understand and maintain a low level of electronic noise, the fundamental reason limiting the sensor resolution. Conventionally, to reach the largest sensing response, graphene transistors are operated at the point of maximum transconductance, where 1/f noise is found to be unfavorably high and poses a major limitation in any attempt to further improve the device sensitivity. We show that operating a graphene transistor in an ambipolar mode near its neutrality point can markedly reduce the 1/f noise in graphene. Remarkably, our data reveal that this reduction in the electronic noise is achieved with uncompromised sensing response of the graphene chips and thus significantly improving the signal-to-noise ratio—compared to that of a conventionally operated graphene transistor for conductance measurement. As a proof-of-concept demonstration of the usage of the aforementioned new sensing scheme to a broader range of biochemical sensing applications, we selected an HIV-related DNA hybridization as the test bed and achieved detections at picomolar concentrations.
机译:在过去的十年中,石墨烯电子特性的丰富性吸引了人们极大的兴趣,希望使用这种二维材料对化学和生物物种进行电检测。但是,实用的石墨烯电子传感器的创建很大程度上取决于我们了解并保持低水平电子噪声的能力,这是限制传感器分辨率的根本原因。常规上,为了达到最大的感测响应,石墨烯晶体管在最大跨导点工作,发现1 / f噪声过高,这对进一步提高器件灵敏度的任何尝试都构成了主要限制。我们表明,在双极性模式下在其中性点附近操作石墨烯晶体管可以显着降低石墨烯中的1 / f噪声。值得注意的是,我们的数据表明,与传统电导率测量石墨烯晶体管相比,石墨烯芯片的感应响应毫不妥协,从而实现了电子噪声的降低,从而显着提高了信噪比。作为将上述新传感方案用于更广泛的生化传感应用的概念验证,我们选择了与HIV相关的DNA杂交作为测试床,并实现了皮摩尔浓度的检测。

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