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Photophysical and Optical Properties of Semiconducting Polymer Nanoparticles Prepared from Hyaluronic Acid and Polysorbate 80

机译:由透明质酸和聚山梨酯80制备的半导体聚合物纳米粒子的光物理和光学性质

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摘要

A nanoprecipitation procedure was utilized to prepare novel diketopyrrolopyrrole-based semiconducting polymer nanoparticles (SPNs) with hyaluronic acid (HA) and polysorbate 80. The nanoprecipitation led to the formation of spherical nanoparticles with average diameters ranging from 100 to 200 nm, and a careful control over the structure of the parent conjugated polymers was performed to probe the influence of π-conjugation on the final photophysical and thermal stability of the resulting SPNs. Upon generation of a series of novel SPNs, the optical and photophysical properties of the new nanomaterials were probed in solution using various techniques including transmission electron microscopy, dynamic light scattering, small-angle neutron scattering, transient absorption, and UV–vis spectroscopy. A careful comparison was performed between the different SPNs to evaluate their excited-state dynamics and photophysical properties, both before and after nanoprecipitation. Interestingly, although soluble in organic solution, the nanoparticles were found to exhibit aggregative behavior, resulting in SPNs that exhibit excited-state behaviors that are very similar to aggregated polymer solutions. Based on these findings, the formation of HA- and polysorbate 80-based nanoparticles does not influence the photophysical properties of the conjugated polymers, thus opening new opportunities for the design of bioimaging agents and nanomaterials for health-related applications.
机译:纳米沉淀法用于制备具有透明质酸(HA)和聚山梨酯80的新型基于二酮吡咯并吡咯基的半导体聚合物纳米颗粒(SPN)。纳米沉淀导致形成平均直径范围为100至200 nm的球形纳米颗粒,并进行了仔细的控制对母体共轭聚合物的结构进行了深入研究,以探讨π共轭对最终SPN最终光物理和热稳定性的影响。在产生一系列新型SPN时,使用多种技术在溶液中探测了这种新型纳米材料的光学和光物理性质,包括透射电子显微镜,动态光散射,小角中子散射,瞬态吸收和紫外可见光谱。在纳米沉淀之前和之后,对不同的SPN进行了仔细的比较,以评估它们的激发态动力学和光物理性质。有趣的是,尽管可溶于有机溶液中,但发现纳米颗粒表现出聚集行为,从而导致SPN表现出与聚集的聚合物溶液非常相似的激发态行为。基于这些发现,基于HA和聚山梨酯80的纳米颗粒的形成不会影响共轭聚合物的光物理性质,从而为设计与健康相关的生物成像剂和纳米材料提供了新的机会。

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