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Effect of Electrochemically Grafted Aryl-Based Monolayer on Nonspecific Electrical Signal of Field-Effect-Transistor-Based Biosensor

机译:电化学接枝芳基单层对基于场效应晶体管的生物传感器非特异性电信号的影响

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In this study, we demonstrate the use of a monolayer film electrografted via diazonium chemistry for controlling the potential response of field-effect transistor (FET)-based sensor. A 4-nitrobenzenediazonium salt is electrografted on an extended-Au-gate FET (EG-Au-FET) with using a radical scavenger by cyclic voltammetry (CV), resulting in the formation of a monolayer. In particular, the surface coverage of the aryl-derivative monolayer on the Au gate electrode gradually increases with increasing number of potential cycles in CV. That is, the denser the surface coverage of the grafted monolayer, the smaller the potential response of the EG-Au-FET. Thus, a platform based on such a monolayer film electrografted via diazonium chemistry is suitable for controlling the potential response based on the interference of low-molecular-weight biomolecules in biosamples.
机译:在本研究中,我们证明了通过重氮化学电移植的单层膜来控制场效应晶体管(FET)的电位响应。通过循环伏安法(CV)使用自由基清除剂在延伸 - au-栅极FET(EG-FET)上电移植4-硝基苯氮鎓盐,从而形成单层形成单层。特别地,芳基衍生物单层在Au栅电极上的表面覆盖率随着CV中的潜在循环的数量逐渐增加而逐渐增加。也就是说,更密集接枝单层的表面覆盖物,越突出的EG-AU-FET的潜在响应越小。因此,基于这种通过重氮化学电移植的单层膜的平台适用于基于生物素中的低分子量生物分子的干扰来控制电位响应。

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