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Photochemical synthesis of fluorescent Au16(RGDC)14 and excited state reactivity with molecular oxygen

机译:荧光Au16(RGDC)14的光化学合成及其与分子氧的激发态反应性

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Aqueous metal nanoclusters have emerged as effective materials for biomedical imaging and therapy. Among them, gold nanoclusters (AuNCs) have been widely studied due to their unique electronic structures. These nanoclusters are often optically impure, comprising a mixture of fluorescent clusters with different metal/ligand compositions. The polydispersity of nanoclusters makes it challenging to isolate the most stable structure, and poses further risks for eventual clinical applications. Herein, Au16L14 clusters are reported which are optically pure as assessed by fluorescence excitation–emission matrix (EEM) spectroscopy and parallel factor (PARAFAC) analysis. The reactivity of their excited state with molecular oxygen was also probed, demonstrating that the Au16L14 clusters generate type I reactive oxygen species (ROS), which can make them effective sensitizers for photodynamic therapy.
机译:水性金属纳米团簇已成为生物医学成像和治疗的有效材料。其中,金纳米团簇(AuNCs)因其独特的电子结构而被广泛研究。这些纳米团簇通常在光学上不纯,由具有不同金属/配体组成的荧光团簇的混合物组成。纳米团簇的多分散性使得分离最稳定的结构具有挑战性,并为最终的临床应用带来了进一步的风险。本文报道了通过荧光激发-发射矩阵 (EEM) 光谱和平行因子 (PARAFAC) 分析评估的 Au16L14 团簇,这些团簇是光学纯的。还探测了Au16L14团簇与分子氧的激发态反应性,证明Au16L14团簇产生I型活性氧(ROS),这可以使它们成为光动力治疗的有效敏化剂。

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