Graduate School of Pure and Applied Sciences, University of Tsukuba, Tsukuba, Ibaraki, 305-8577, Japan.
Photochem Photobiol Sci. 2011 Jan;10(1):116-22. doi: 10.1039/c0pp00272k. Epub 2010 Nov 9.
A series of stilbene-cored poly(benzyl ether) dendrimers with benzophenone peripheries were synthesized and their photophysical and photochemical properties were studied. Fluorescence studies revealed that singlet-singlet energy transfer (SSET) from the stilbene core to the benzophenone units took place efficiently in dendrimers of all generations. Similarly, phosphorescence and time-resolved spectroscopic measurements indicated efficient triplet-triplet energy transfer (TTET) from the benzophenone periphery to the stilbene core. Upon excitation at 310 nm, the stilbene core isomerizes via an energy round trip within the dendrimer shell. The quantum yields for the energy round trip (Φ(ERT)), defined as the product of the quantum yields of SSET, intersystem crossing, and TTET (Φ(ERT) = Φ(SS)Φ(isc)Φ(TT)), were extremely high for all generations--99%, 95% and 94% for G1, G2, and G3, respectively--which means that the excitation energy of the dendrimer core was transferred to the dendrimer periphery and back to the core almost quantitatively. The quantum yield for photoisomerization of G1-G3 via an energy round trip was higher than for other stilbene-cored dendrimers, which mainly isomerize from the excited singlet state. Photostability in the dendrimers was also demonstrated and discussed.
一系列具有二苯甲酮外围的二苯乙烯核聚(苯甲醚)树枝状大分子被合成出来,并研究了它们的光物理和光化学性质。荧光研究表明,在所有代的树枝状大分子中,二苯乙烯核到二苯甲酮单元的单重态-单重态能量转移(SSET)有效地发生了。同样,磷光和时间分辨光谱测量表明,从二苯甲酮外围到二苯乙烯核的三重态-三重态能量转移(TTET)也很有效。在 310nm 激发时,二苯乙烯核通过在树枝状大分子壳内的能量循环异构化。对于所有代的树枝状大分子,能量循环的量子产率(Φ(ERT))定义为 SSET、系间窜跃和 TTET 的量子产率的乘积(Φ(ERT)=Φ(SS)Φ(isc)Φ(TT))都非常高——分别为 99%、95%和 94%,对于 G1、G2 和 G3——这意味着树枝状大分子核心的激发能量几乎全部转移到了树枝状大分子的外围,然后又回到了核心。通过能量循环进行 G1-G3 光异构化的量子产率高于其他二苯乙烯核树枝状大分子,后者主要从激发单重态异构化。还证明并讨论了树枝状大分子的光稳定性。