Department of Applied Chemistry, Graduate School of Engineering, Osaka University, Suita, Osaka, 565-0871, Japan.
Department of Chemistry and Biotechnology, Graduate School of Engineering, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo, 113-8656, Japan.
Chemistry. 2019 Nov 22;25(65):14817-14825. doi: 10.1002/chem.201903224. Epub 2019 Oct 8.
The relationship between the photophysical properties and molecular orientation of 1,3,6,8-tetraalkylpyrenes in the solid state is described herein. The introduction of alkyl groups with different chain structures (in terms of length and branching) did not affect the photophysical properties in solution, but significantly shifted the emission wavelengths and fluorescence quantum yields in the solid state for some samples. Pyrenes bearing ethyl, isobutyl, or neopentyl groups at the 1-, 3-, 6-, and 8-positions showed similar emission profiles in both the solution and solid states. In contrast, pyrenes bearing other alkyl groups exhibited an excimer emission in the solid state, similar to that of the parent pyrene. On studying the photophysical properties in the solid state with respect to the obtained crystal structures, the observed solid-state photophysical properties were found to depend on the relative position of the pyrene chromophores. The solid-state photophysical properties can be controlled by the alkyl groups, which provide changing crystal packing. Among the pyrenes tested, 1,3,6,8-tetraethylpyrene showed the highest fluorescence quantum yield of 0.88 in the solid state.
本文描述了 1,3,6,8-四烷基芘在固态中的光物理性质和分子取向之间的关系。引入具有不同链结构(长度和支化度)的烷基基团不会影响溶液中的光物理性质,但会显著改变一些样品在固态中的发射波长和荧光量子产率。在 1,3,6,8-位带有乙基、异丁基或新戊基的芘在溶液和固态中具有相似的发射轮廓。相比之下,带有其他烷基的芘在固态中表现出激基缔合物发射,类似于母体芘。在研究固态中的光物理性质与其获得的晶体结构之间的关系时,发现观察到的固态光物理性质取决于芘发色团的相对位置。通过烷基基团提供改变的晶体堆积,可以控制固态光物理性质。在所测试的芘中,1,3,6,8-四乙基芘在固态中表现出最高的荧光量子产率为 0.88。