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Graphene-based liquid gated field-effect transistor for label-free detection of DNA hybridization

机译:基于石墨烯的液体门控场效应晶体管,用于无标记检测DNA杂交

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The low noise and the high transconductance of graphene field-effect transistor uplift it as an auspicious candidate for different standard biological applications. Recently, a reliable determination of DNA hybridization's binding kinetics plays an essential role in biological systems, personalization and precision medicine. Here, we demonstrate a field-effect transistor based on a single CVD-grown graphene layer for label-free DNA hybridization detection. The developed biosensor displays a 7 mV/dec sensitivity in a wide dynamic range spanning 7 orders of magnitude with a detection limit of 15 fM, and exhibited a good selectivity against the non-complementary target. Bio-recognition events result in a negative gate voltage shift of the graphene Dirac point.
机译:低噪声和石墨烯场效应晶体管隆起的高跨导,作为不同标准生物应用的吉祥候选者。 最近,可靠测定DNA杂交的结合动力学在生物系统,个性化和精密药中起着重要作用。 在这里,我们基于单个CVD生长的石墨烯层证明了用于无标记的DNA杂交检测的场效应晶体管。 开发的生物传感器在宽动态范围内显示7 MV / DEC敏感度,跨越7个级,检测限为15 fm,并对非互补目标表现出良好的选择性。 生物识别事件导致石墨烯Dirac点的负栅极电压偏移。

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