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Photocatalysis-Induced Renewable Field-Effect Transistor for Protein Detection

机译:光催化诱导的可更新场效应晶体管用于蛋白质检测

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The field-effect transistor (FET) biosensor has attracted extensive attentions, due to its unique features in detecting various biomolecules with high sensitivity and selectivity. However, currently used FET biosensors obtaining from expensive and elaborate microanofabrication are always disposable because the analyte cannot be efficiently removed after detection. In this work, we established a photocatalysis-induced renewable graphene-FET (G-FET) biosensor for protein detection, by layer-to-layer assembling reduced graphene oxide (RGO) and RGO-encapsulated TiO2 composites to form a sandwiching RGO@TiO2 structure on a prefabricated FET sensor surface. After immobilization of anti-D-Dimer on the graphene surface, sensitive detection of D-Dimer was achieved with the detection limits of 10 pg/mL in PBS and 100 pg/mL in serum, respectively. Notably, renewal of the FET biosensor for recycling measurements was significantly realized by photocatalytically cleaning the substances on the graphene surface. This work demonstrates for the first time the development and application of photocatalytically renewable G-FET biosensor, paving a new way for G-FET sensor toward a plethora of diverse applications.
机译:场效应晶体管(FET)生物传感器以其高灵敏度和高选择性检测各种生物分子的独特功能,引起了广泛的关注。然而,由于昂贵的检测物不能在检测后被有效地去除,因此从昂贵且精细的微/纳米加工中获得的当前使用的FET生物传感器始终是一次性的。在这项工作中,我们通过将还原氧化石墨烯(RGO)和RGO封装的TiO2复合材料逐层组装以形成夹心的RGO @ TiO2,从而建立了光催化诱导的可再生石墨烯-FET(G-FET)生物传感器用于蛋白质检测。预制FET传感器表面的结构。将抗D-二聚体固定在石墨烯表面上后,可实现D-二聚体的灵敏检测,其PBS中的检出限分别为10 pg / mL和血清中的检出限为100 pg / mL。值得注意的是,通过光催化清洁石墨烯表面上的物质,实现了用于循环测量的FET生物传感器的更新。这项工作首次证明了光催化可再生G-FET生物传感器的开发和应用,为G-FET传感器走向多种多样的应用铺平了新途径。

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