Mitsui Masaaki, Higashi Koji, Hirumi Yohei, Kobayashi Kenji
Department of Chemistry, College of Science, Rikkyo University , 3-34-1, Nishiikebukuro, Toshima-ku, Tokyo, 171-8501, Japan.
Department of Chemistry, Faculty of Science, Shizuoka University , 836 Ohya, Suruga-ku, Shizuoka 422-8529, Japan.
J Phys Chem A. 2016 Oct 27;120(42):8317-8325. doi: 10.1021/acs.jpca.6b08734. Epub 2016 Oct 18.
The effects of supramolecular encapsulation on the photophysics and photostability of a highly fluorescent dimeric derivative of 2,6-diacetoxy-9,10-bis(arylethynyl)anthracene (G2) were investigated by single-molecule fluorescence spectroscopy (SMFS). The fluorescence properties of free-G2 and its self-assembled boronic ester encapsulation complex, G2@(Cap), were compared in solution and a glassy polymer film. The fluorescence spectral characteristics and theoretical calculations suggest that the environment affects the excited-state conformation and subsequent fluorescence emission of G2@(Cap). In particular, in the liquid and polymer environments, G2@(Cap) emits a fluorescence photon in the planar and twist conformation, respectively, whereas the fluorescence-emitting conformation of free-G2 is planar in both environments. The luminous conformation differences between free-G2 and G2@(Cap) in polymer are reflected in the intersystem crossing (ISC) parameters (the ISC quantum yield and triplet lifetime), as determined by fluorescence autocorrelation analysis. The photobleaching yield revealed a 3-fold enhancement in the photostability of encapsulated G2 (relative to free-G2). Under the SMFS measurement conditions, the photostability of the encapsulation complex was independent of the guest's photostability and appeared to be dominated by the thermal stability of the Cap host molecule.
通过单分子荧光光谱(SMFS)研究了超分子包封对2,6 - 二乙酰氧基 - 9,10 - 双(芳基乙炔基)蒽(G2)的高荧光二聚体衍生物的光物理性质和光稳定性的影响。在溶液和玻璃态聚合物薄膜中比较了游离G2及其自组装硼酸酯包封复合物G2@(Cap)的荧光性质。荧光光谱特征和理论计算表明,环境会影响G2@(Cap)的激发态构象和随后的荧光发射。特别是,在液体和聚合物环境中,G2@(Cap)分别以平面构象和扭曲构象发射荧光光子,而游离G2在两种环境中的荧光发射构象均为平面构象。通过荧光自相关分析确定,聚合物中游离G2和G2@(Cap)之间的发光构象差异反映在系间窜越(ISC)参数(ISC量子产率和三重态寿命)中。光漂白产率表明包封的G2的光稳定性提高了3倍(相对于游离G2)。在SMFS测量条件下,包封复合物的光稳定性与客体的光稳定性无关,似乎由Cap主体分子的热稳定性主导。