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首页> 外文期刊>Applied Physics Letters >Nanogap-based dielectric-specific colocalization for highly sensitive surface plasmon resonance detection of biotin-streptavidin interactions
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Nanogap-based dielectric-specific colocalization for highly sensitive surface plasmon resonance detection of biotin-streptavidin interactions

机译:基于纳米间隙的介电特异性共定位用于生物素-链霉亲和素相互作用的高灵敏度表面等离子体共振检测

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We have performed highly sensitive surface plasmon resonance (SPR) detection by colocalizing the evanescent near-fields and target molecular distribution. The colocalization is based on oblique metal evaporation to form nanogaps of a size under 100 nm without using electron-beam lithography. The concept was demonstrated by detecting siloxane-based biotin/streptavidin interactions. 50-nm nanogaps produced the largest amplification of optical signatures and two orders of magnitude enhancement of sensitivity over conventional thin film-based measurements. The enhancement is associated with efficient overlap of localized near-fields and target. Colocalized detection scheme is expected to provide clues to molecular sensitivity for SPR biosensing.
机译:我们已经通过将瞬逝近场和目标分子分布共定位来进行高灵敏度的表面等离子体共振(SPR)检测。共定位基于倾斜的金属蒸发以形成尺寸小于100 nm的纳米间隙,而无需使用电子束光刻。该概念通过检测基于硅氧烷的生物素/链霉亲和素相互作用来证明。与传统的基于薄膜的测量相比,50 nm的纳米间隙产生了最大的光学特征放大,并且灵敏度提高了两个数量级。增强与局部近场和目标的有效重叠相关。共定位检测方案有望为SPR生物传感的分子敏感性提供线索。

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