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Attomolar detection of virus by liquid coplanar-gate graphene transistor on plastic

机译:液体共面栅极石墨烯晶体管对病毒的抗摩托检测

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The direct method of detecting a virus with extremely low concentration is recommended for the diagnosis of viral disease. In this study, coplanar-gate graphene field-effect transistors (GFETs) were built on flexible polyethylene terephthalate substrates for the attomolar detection of a virus. The GFETs exhibited a very low detection limit of 47.8 aM with relatively low source/drain voltage due to aqueous dielectric media which stabilizes viruses and antibodies for specific bonding. The antibody as a probe molecule was decorated on a graphene surface using 1-pyrenebutanoic acid succinimidyl ester that had previously been immobilized on a graphene surface. The Dirac point voltage shifted downward after dropping the virus solution, due to the electrostatic gating effect of graphene in the antigen (namely, virus)-antibody complex. The virus detection platform used in this study is expected to be beneficial for direct diagnosis in saline environments, since the performances of GFETs were not significantly affected by the presence of Na+ and Cl-. Furthermore, since our flexible and transparent virus sensors can be used in a wearable device, they provide a simple and fast method for diagnosing viruses.
机译:建议诊断病毒疾病的鉴定,检测具有极低浓度的病毒的直接方法。在本研究中,基于柔性聚对苯二甲酸乙二醇酯基底基板上建立了共面石墨烯场效应晶体管(GFET),用于抗托管检测病毒。由于水介电介质,GFET具有非常低的检测限为47.8μS,具有相对低的源/漏极电压,其稳定用于特异性键合的病毒和抗体。作为探针分子的抗体在石墨烯表面上装饰在石墨烯表面上,使用先前固定在石墨烯表面上的1-芘丁二酸琥珀酰亚胺酯。由于石墨烯在抗原(即,病毒)复合物中的静电门控效应,降低病毒溶液后,Dirac点电压向下移动。本研究中使用的病毒检测平台预计将有利于盐水环境中直接诊断,因为GFET的性能未受Na +和Cl-的存在显着影响。此外,由于我们的柔性和透明的病毒传感器可用于可穿戴设备,因此它们提供了一种简单而快速的方法来诊断病毒。

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