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Hybrid Organic/Inorganic Nanomaterials for Biochemical Sensing

机译:杂种有机/无机纳米材料进行生化传感

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In this paper, different nanostructured semiconductors with advanced properties are explored for the realization of both optical and electrical biosensors for DNA detection. A hybrid sensor constituted by graphene oxide (GO) covalently grafted on a porous silicon (PSi) matrix is realized. A peptide nucleic acid (PNA) probe, able to recognize its complementary DNA (c-DNA) sequence, is immobilized on the surface of PSi/GO device for label-free optical sensing. Electrical sensing of DNA is also demonstrated using a Zinc Oxide Nanowires (ZnONWs) sensor func-tionalized with PNA probe; the Ⅰ -Ⅴ characteristic of the device depends on the c-DNA concentration under analysis.
机译:在本文中,探讨了具有先进性质的不同纳米结构半导体,以实现用于DNA检测的光学和电气生物传感器。 实现了由环烯氧化物(GO)构成的混合传感器,共价嫁接在多孔硅(PSI)基质上。 能够识别其互补DNA(C-DNA)序列的肽核酸(PNA)探针固定在PSI /去装置的表面上以进行无标记光学感测。 还使用用PNA探针菌有核化型氧化物纳米线(ZnOnWS)传感器的DNA电感; Ⅰ-Ⅳ的特征取决于在分析中的C-DNA浓度。

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