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All-(111) Surface Silicon Nanowires: Selective Functionalization for Biosensing Applications

机译:全(111)表面硅纳米线:用于生物传感应用的选择性功能化

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We demonstrate the utilization of selective functionalization of carbon-silicon (C-Si) alkyl and alkenyl monolayers covalently linked to all-(111) surface silicon nanowire (Si-NW) biosensors. Terminal amine groups on the functional monolayer surfaces were used for conjugation of biotin n-hydroxysuccirtimide ester The selective functionalization is demonstrated by contact angle. X-ray photoelectron spectroscopy (XPS). and high-resolution scanning electron microscopy (HRSEM) of 5 nm diameter thiolated Au nanoparticles linked with streptavidin and conjugated to the biotinylated all-(111) surface Si-NWs. Electrical measurements of monolayer passivated Si-NWs show improved device behavior and performance. Furthermore, an analytical model is presented to demonstrate the improvement in detection sensitivity of the alkyl and alkenyl passivated all-(111) Si-NW biosensors compared to conventional nanowire biosensor geometries and silicon dioxide passivation layers as well as interface design and electrical biasing guidelines for depletion-mode sensors.
机译:我们证明了碳-硅(C-Si)烷基和烯基单层共价连接到全(111)表面硅纳米线(Si-NW)生物传感器的选择性功能化的利用。功能性单层表面上的末端胺基团用于缀合生物素正羟基琥珀酰亚胺酯。选择性官能化通过接触角证明。 X射线光电子能谱(XPS)。和高分辨率扫描电子显微镜(HRSEM)的直径5 nm的硫链化金纳米颗粒与链霉亲和素连接并与生物素化的全(111)表面Si-NWs共轭。单层钝化Si-NW的电学测量显示出改进的器件性能和性能。此外,提出了一个分析模型来证明与传统的纳米线生物传感器几何形状和二氧化硅钝化层相比,烷基和烯基钝化的全(111)Si-NW生物传感器在检测灵敏度上的改进,以及界面设计和电偏压准则耗尽模式传感器。

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