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基于蒽的染料通过超分子封装实现光稳定性增强:一种用于单分子研究的新型光稳定荧光团。

Enhanced photostability of an anthracene-based dye due to supramolecular encapsulation: a new type of photostable fluorophore for single-molecule study.

作者信息

Mitsui Masaaki, Higashi Koji, Takahashi Ryoya, Hirumi Yohei, Kobayashi Kenji

机构信息

Department of Chemistry, Graduate School of Science, Shizuoka University, 836 Ohya, Suruga-ku, Shizuoka 422-8529, Japan.

出版信息

Photochem Photobiol Sci. 2014 Aug;13(8):1130-6. doi: 10.1039/c4pp00065j.

Abstract

For single-molecule fluorescence studies, highly photostable fluorophores are absolutely imperative, because photo-induced degradation (i.e., photobleaching) limits the observation time of individual molecules. Herein, the photophysics and photostability of a highly fluorescent 9,10-bis(phenylethynyl)anthracene derivative (G) and its self-assembled boronic ester encapsulation complex (G@Cap) embedded in a glassy polymer matrix are investigated by single-molecule fluorescence spectroscopy (SMFS). The heterogeneity of the fluorescence emission wavelength and triplet blinking kinetics of the guest G are significantly decreased by supramolecular encapsulation due to conformational restriction and reduced heterogeneity in the local environment. A nearly 10-fold increase in the photostability of G due to encapsulation is quantitatively confirmed by evaluating the photobleaching yields of G and G@Cap. In addition, it is found that the G@Cap is >30-fold more photostable than rhodamine 6G, a widely used fluorescent dye in single-molecule studies. These results demonstrate that the G@Cap can serve as a very bright, long-lasting fluorescent probe for single-molecule studies.

摘要

对于单分子荧光研究而言,高光稳定性的荧光团是绝对必要的,因为光致降解(即光漂白)会限制单个分子的观测时间。在此,通过单分子荧光光谱(SMFS)研究了嵌入玻璃态聚合物基质中的高荧光性9,10-双(苯乙炔基)蒽衍生物(G)及其自组装硼酸酯包封复合物(G@Cap)的光物理性质和光稳定性。由于构象限制和局部环境中异质性的降低,客体G的荧光发射波长和三重态闪烁动力学的异质性通过超分子包封显著降低。通过评估G和G@Cap的光漂白产率,定量证实了由于包封导致G的光稳定性提高了近10倍。此外,发现G@Cap的光稳定性比罗丹明6G高30倍以上,罗丹明6G是单分子研究中广泛使用的荧光染料。这些结果表明,G@Cap可作为用于单分子研究的非常明亮、持久的荧光探针。

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