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Controlling photophysical properties of ultrasmall conjugated polymer nanoparticles through polymer chain packing

机译:通过聚合物链堆积控制超小共轭聚合物纳米粒子的光物理性质

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摘要

Applications of conjugated polymer nanoparticles (Pdots) for imaging and sensing depend on their size, fluorescence brightness and intraparticle energy transfer. The molecular design of conjugated polymers (CPs) has been the main focus of the development of Pdots. Here we demonstrate that proper control of the physical interactions between the chains is as critical as the molecular design. The unique design of twisted CPs and fine-tuning of the reprecipitation conditions allow us to fabricate ultrasmall (3.0–4.5 nm) Pdots with excellent photostability. Extensive photophysical and structural characterization reveals the essential role played by the packing of the polymer chains in the particles in the intraparticle spatial alignment of the emitting sites, which regulate the fluorescence brightness and the intraparticle energy migration efficiency. Our findings enhance understanding of the relationship between chain interactions and the photophysical properties of CP nanomaterials, providing a framework for designing and fabricating functional Pdots for imaging applications.
机译:共轭聚合物纳米粒子(Pdots)在成像和传感方面的应用取决于其尺寸,荧光亮度和粒子内能量转移。共轭聚合物(CPs)的分子设计一直是Pdots开发的主要重点。在这里,我们证明正确控制链之间的物理相互作用与分子设计同样重要。扭曲CP的独特设计和再沉淀条件的微调使我们能够制造出具有出色光稳定性的超小(3.0–4.5?nm)Pdot。广泛的光物理和结构表征揭示了在发射点的粒子内空间排列中,粒子中聚合物链的堆积所起的重要作用,该空间排列调节了荧光亮度和粒子内能量迁移效率。我们的发现增强了对链相互作用与CP纳米材料的光物理特性之间关系的理解,为设计和制造用于成像应用的功能性Pdot提供了框架。

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