Department of Organic and Polymeric Materials, Tokyo Institute of Technology , Tokyo 152-8552, Japan.
Fukui Institute for Fundamental Chemistry, Kyoto University , Kyoto 606-8103, Japan.
J Org Chem. 2017 Jul 7;82(13):6865-6873. doi: 10.1021/acs.joc.7b00996. Epub 2017 Jun 28.
A new design strategy to activate aggregation-induced emission (AIE) in pyrene chromophores is reported. In a previous report, we demonstrated that highly twisted N,N-dialkylamines of anthracene and naphthalene induce drastic AIE when these donors are introduced at appropriate positions to stabilize the S/S minimum energy conical intersection (MECI). In the present study, this design strategy was applied to pyrene: the introduction of N,N-dimethylamine substituents at the 4,5-positions of pyrene, the so-called K-region, are likely to stabilize MECIs. To examine this hypothesis, four novel pyrene derivatives, which contain highly twisted N,N-dimethylamino groups at the 4- (4-Py), 4,5- (4,5-Py), 1- (1-Py), or 1,6-positions (1,6-Py) were tested. The nonradiative transitions of 4,5-Py are highly efficient (k = 57.1 × 10 s), so that its fluorescence quantum yield in acetonitrile decreases to Φ = 0.04. The solid-state fluorescence of 4,5-Py is efficient (Φ = 0.49). In contrast, 1,6-Py features strong fluorescence (Φ = 0.48) with a slow nonradiative transition (k = 11.0 × 10 s) that is subject to severe quenching (Φ = 0.03) in the solid state. These results underline that the chemistry of the pyrene K-region is intriguing, both from a photophysical perspective and with respect to materials science.
报道了一种在芘生色团中激活聚集诱导发射(AIE)的新设计策略。在之前的报告中,我们证明了蒽和萘的高度扭曲的 N,N-二烷基胺在将这些供体引入适当位置以稳定 S/S 最低能量交叉(MECI)时,会引起剧烈的 AIE。在本研究中,该设计策略应用于芘:在芘的 4,5-位(所谓的 K-区)引入 N,N-二甲基胺取代基,可能会稳定 MECIs。为了检验这一假设,我们测试了四种新型的芘衍生物,它们在 4-位(4-Py)、4,5-位(4,5-Py)、1-位(1-Py)或 1,6-位(1,6-Py)上含有高度扭曲的 N,N-二甲基氨基。4,5-Py 的非辐射跃迁非常高效(k = 57.1×10 s),因此其在乙腈中的荧光量子产率降低至Φ = 0.04。4,5-Py 的固态荧光是高效的(Φ = 0.49)。相比之下,1,6-Py 具有强荧光(Φ = 0.48),但非辐射跃迁缓慢(k = 11.0×10 s),在固态中易发生严重猝灭(Φ = 0.03)。这些结果表明,从光物理角度和材料科学角度来看,芘 K-区的化学性质都很有趣。