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首页> 外文期刊>Plasmonics >Near-infrared metal-enhanced fluorescence using a liquid-liquid droplet micromixer in a disposable poly(methyl methacrylate) microchip
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Near-infrared metal-enhanced fluorescence using a liquid-liquid droplet micromixer in a disposable poly(methyl methacrylate) microchip

机译:使用液-液滴微混合器在一次性聚甲基丙烯酸甲酯微芯片中进行近红外金属增强荧光

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摘要

Solution-based metal-enhanced fluorescence of near-infrared fluorophores in a poly(methyl methacrylate) microchip is studied. A liquid-liquid droplet micromixer is used for rapid mixing of fluorophores with silver nanoparticles while maintaining discrete packets of known analytes for reproducible quantitative analysis. Nanoparticle aggregation within the microchip is controlled by individually adjusting salt concentration, colloid concentration, and mixing efficiency. Results identify an optimal salt concentration for aggregate formation and enhanced fluorescence, while the impacts of colloid concentration and mixing efficiency increase linearly, suggesting the possibility of further enhancement. Fluorescence enhancements of 35-fold were achieved on a microfluidics device using metal-enhanced fluorescence in a discrete solution-based system with exposure times of only 50 ms.
机译:研究了聚(甲基丙烯酸甲酯)微芯片中基于溶液的近红外荧光团的金属增强荧光。液体-液滴微混合器用于荧光团与银纳米颗粒的快速混合,同时保留已知分析物的离散包装,以进行可重复的定量分析。通过分别调节盐浓度,胶体浓度和混合效率来控制微芯片内的纳米颗粒聚集。结果确定了用于聚集体形成和增强荧光的最佳盐浓度,而胶体浓度和混合效率的影响呈线性增加,表明进一步增强的可能性。在微流控设备上,使用金属增强的荧光,在基于离散溶液的系统中,其曝光时间仅为50毫秒,实现了35倍的荧光增强。

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