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Squaraine-BasedPolymer Dots with Narrow Bright Near-InfraredFluorescence for Biological Applications

机译:基于方胺窄点明亮的近红外聚合物点生物应用荧光

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摘要

This article describes the design and development of squaraine-based semiconducting polymer dots (Pdots) that show large Stokes shifts and narrow-band emissions in the near-infrared (NIR) region. Fluorescent copolymers containing fluorene and squaraine units were synthesized and used as precursors for preparing the Pdots, where exciton diffusion and likely through-bond energy transfer led to highly bright and narrow-band NIR emissions. The resulting Pdots exhibit the emission full width at half-maximum of ∼36 nm, which is ∼2 times narrower than those of inorganic quantum dots in the same wavelength region (∼66 nm for Qdot705). The squaraine-based Pdots show a high fluorescence quantum yield (QY) of 0.30 and a large Stokes shift of ∼340 nm. Single-particle analysis indicates that the average per-particle brightness of the Pdots is ∼6 times higher than that of Qdot705. We demonstrate bioconjugation of the squaraine Pdots and employ the Pdot bioconjugates in flow cytometry and cellular imaging applications. Our results suggest that the narrow bandwidth, highQY, and large Stokes shift are promising for multiplexed biologicaldetections.
机译:本文介绍了基于方酸的半导体聚合物点(Pdot)的设计和开发,这些点在近红外(NIR)区域显示出较大的斯托克斯频移和窄带发射。合成了包含芴和方酸单元的荧光共聚物,并将其用作制备Pdot的前驱体,在该Pdot中,激子扩散和可能的键合能量转移导致了高亮度和窄带NIR发射。所得的Pdot在半最大值处显示的发射全宽度约为36 nm,比相同波长范围内的无机量子点(Qdot705约为66 nm)窄约2倍。基于方酸的Pdots显示出0.30的高荧光量子产率(QY)和约340 nm的大斯托克斯位移。单颗粒分析表明,Pdot的平均每颗粒亮度比Qdot705高约6倍。我们证明了方酸Pdots的生物共轭,并在流式细胞仪和细胞成像应用中采用了Pdot生物共轭物。我们的结果表明,带宽较窄,QY和较大的斯托克斯频移有望用于多重生物学检测。

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