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Graphene Oxide Based Photoinduced Charge Transfer Label-Free Near-Infrared Fluorescent Biosensor for Dopamine

机译:基于氧化石墨烯的多巴胺光诱导电荷转移无标签近红外荧光生物传感器

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摘要

While the super fluorescence quenching capacity of graphene and graphene oxide (GO) has been extensively employed to develop fluorescent sensors, their own unique fluorescence and its potential for chemo-/biosensing have seldom been explored. Here we report a GO-based photoinduced charge transfer (PCT) label-free near-infrared (near-IR) fluorescent biosensor for dopamine (DA). The multiple noncovalent interactions between GO and DA and the ultrafast decay at the picosecond range of the near-IR fluorescence of GO resulted in effective self-assembly of DA molecules on the surface of GO, and significant fluorescence quenching, allowing development of a PCT-based biosensor with direct readout of the near-IR fluorescence of GO for selective and sensitive detection of DA. The developed method gave a detection limit of 94 nM and a relative standard deviation of 2.0percent for 11 replicate detections of 2.0 (mu)M DA and was successfully applied to the determination of DA in biological fluids with quantitative recovery (98-115percent).
机译:虽然石墨烯和氧化石墨烯(GO)的超荧光猝灭能力已被广泛用于开发荧光传感器,但很少探索其自身独特的荧光及其化学/生物传感潜力。在这里,我们报告基于多巴胺(DA)的基于GO的光诱导电荷转移(PCT)无标签的近红外(near-IR)荧光生物传感器。 GO和DA之间的多种非共价相互作用以及GO的近红外荧光在皮秒范围内的超快速衰减,导致DA分子在GO表面上有效地自组装,并发生明显的荧光猝灭,从而导致PCT-基于生物的传感器,可直接读出GO的近红外荧光,用于DA的选择性和灵敏检测。所开发的方法对11次重复检测2.0μMDA给出了94 nM的检出限和2.0%的相对标准偏差,并成功应用于定量定量回收(98-115%)的生物液体中的DA。

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