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首页> 外文期刊>Nanoscale Research Letters >Localized Surface Plasmon Resonance Biosensing with Large Area of Gold Nanoholes Fabricated by Nanosphere Lithography
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Localized Surface Plasmon Resonance Biosensing with Large Area of Gold Nanoholes Fabricated by Nanosphere Lithography

机译:纳米球面光刻技术制备的大面积金纳米孔局部表面等离子体共振生物传感

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Localized surface plasmon resonance (LSPR) has been extensively studied as potential chemical and biological sensing platform due to its high sensitivity to local refractive index change induced by molecule adsorbate. Previous experiments have demonstrated the LSPR generated by gold nanoholes and its biosensing. Here, we realize large uniform area of nanoholes on scale of cm_(2)on glass substrate by nanosphere lithography which is essential for mass production. The morphology of the nanoholes is characterized using scanning electron microscope and atomic force microscope. The LSPR sensitivity of the nanoholes to local refractive index is measured to be 36?nm/RIU. However, the chip has demonstrated high sensitivity and specificity in biosensing: bovine serum albumin adsorption is detected with LSPR peak redshift of 27?nm, and biotin-streptavidin immunoassay renders a LSPR redshift of 11?nm. This work forms a foundation toward the cost-effective, high-throughput, reliable and robust chip-based LSPR biosensor.
机译:局部表面等离振子共振(LSPR)由于对分子吸附物诱导的局部折射率变化具有很高的敏感性,因此已被广泛研究为潜在的化学和生物传感平台。先前的实验已经证明了金纳米孔产生的LSPR及其生物传感。在这里,我们通过纳米球体光刻技术在玻璃基板上实现了cm_(2)尺度上纳米孔的大面积均匀分布,这对于批量生产至关重要。使用扫描电子显微镜和原子力显微镜表征纳米孔的形态。经测量,纳米孔对局部折射率的LSPR灵敏度为36?nm / RIU。但是,该芯片在生物传感中显示出高灵敏度和特异性:检测到牛血清白蛋白吸附的LSPR峰红移为27?nm,生物素-链霉亲和素免疫测定法显示LSPR的红移为11?nm。这项工作为实现具有成本效益,高通量,可靠和强大的基于芯片的LSPR生物传感器奠定了基础。

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