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Luminescent quantum-dot-sized conjugated polymer nanoparticles— nanoparticle formation in a miniemulsion system

机译:发光的量子点大小的共轭聚合物纳米颗粒—微乳液体系中的纳米颗粒形成

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摘要

The synthesis of semiconducting polymer nanospheres (SPNs) by miniemulsion methods has been reported previously, however the resulting materials have typically been significantly larger than quantum dots, the nanomaterial of choice for cell imaging. In the current work, we aimed to obtain quantum-dot-sized poly(ethylene-glycol) (PEG) functionalised SPNs by optimising the miniemulsion method reported previously.We report that PEG functionalised SPNs with a narrow distribution of quantum dot sizes were successfully synthesised, with mean diameters ranging between 2 and 5 nm. PEG-dithiol was also used in one variant of the syntheses, allowing the purified sample to be examined by mass spectrometry (using sulfur as a reporter), confirming the inclusion of a significant number of PEG molecules in the nanoparticles. Also, the presence of PEG was found to significantly affect the yield of the reaction, suggesting it played a role in nanoparticle formation. The nanoparticles were characterized by TEM, absorption and emission spectroscopy, and were found to be stable in solution for months.
机译:先前已经报道了通过细乳液法合成半导体聚合物纳米球(SPN),但是所得材料通常明显大于量子点,量子点是细胞成像的首选纳米材料。在目前的工作中,我们旨在通过优化先前报道的细乳液法获得量子点大小的聚乙二醇(PEG)功能化SPN。我们报道成功合成了具有窄量子点大小分布的PEG功能化SPN。 ,平均直径在2到5 nm之间。 PEG-二硫醇也用于合成的一种变体中,从而允许通过质谱法(使用硫作为报告分子)检查纯化的样品,从而确认纳米颗粒中包含大量PEG分子。另外,发现PEG的存在显着影响反应的产率,表明其在纳米颗粒形成中起作用。纳米颗粒通过TEM,吸收和发射光谱进行表征,并且发现在溶液中稳定数月。

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