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Multicolor Fluorescent Semiconducting Polymer Dots with Narrow Emissions and High Brightness

机译:多色荧光半导体聚合物点具有窄排放和高亮度

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摘要

Fluorescent semiconducting polymer dots (Pdots) have attracted great interest because of their superior characteristics as fluorescent probes, such as high fluorescence brightness, fast radiative rates, and excellent photostability. However, currently available Pdots generally exhibit broad emission spectra, which significantly limit their usefulness in many biological applications involving multiplex detections. Here, we describe the design and development of multicolor narrow emissive Pdots based on different boron-dipyrromethene (BODIPY) units. BODIPY-containing semiconducting polymers emitting at multiple wavelengths were synthesized and used as precursors for preparing the Pdots, where intra-particle energy transfer led to highly bright, narrow emissions. The emission full-width at half maximum (FWHM) of the resulting Pdots varies from 40 nm to 55 nm, which is 1.5~2 times narrower than those of conventional semiconducting polymer dots. BODIPY520 Pdots was about an order of magnitude brighter than commercial Qdot 525 under identical laser excitation conditions. Fluorescence imaging and flow cytometry experiments indicate the narrow emissions from these bright Pdots are promising for multiplexed biological detections.
机译:荧光半导体聚合物点(Pdot)由于其作为荧光探针的优越特性(例如高荧光亮度,快速辐射速率和出色的光稳定性)而引起了人们的极大兴趣。但是,当前可用的Pdot通常显示出较宽的发射光谱,这大大限制了它们在涉及多重检测的许多生物学应用中的用途。在这里,我们描述了基于不同的硼二吡咯亚甲基(BODIPY)单元的多色窄发射点的设计和开发。合成了在多个波长处发射的含BODIPY的半导体聚合物,并将其用作制备Pdot的前体,在该Pdot中,粒子内能量传递导致高度明亮,狭窄的发射。所得Pdot的半峰发射全宽(FWHM)在40 nm至55 nm之间变化,比常规半导体聚合物点的发射半峰宽窄1.5到2倍。在相同的激光激发条件下,BODIPY520 Pdots比商用Qdot 525亮约一个数量级。荧光成像和流式细胞术实验表明,这些明亮的Pdot产生的窄发射光有望用于多重生物学检测。

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