State Key Laboratory of Theoretical and Computational Chemistry, Institute of Theoretical Chemistry, Jilin University, Changchun, 130023, People's Republic of China.
Org Biomol Chem. 2012 Oct 7;10(37):7527-35. doi: 10.1039/c2ob25916h.
N-arylpyrrole-based dyes possessing excellent opto-electronic properties are promising candidates for two-photon fluorescence labeling materials. The systematic investigation of novel N-arylpyrrole derivatives is of great importance for both fine-tuning electronic spectra and designing two-photon absorption (2PA) materials. We thoroughly studied influences of the π-conjugated center and N-substituted pyrrole moieties on the linear optical and 2PA properties. Our results show that introducing N-arylpyrrole produces bathochromic-shifts of the absorption and emission bands and an enhancement of the 2PA cross section (δ(max)), demonstrating that the electron-rich pyrrole moieties can efficiently increase intramolecular charge transfer. Substitution of fluorenyl with benzothiadiazole produces the lower energy gap, higher emission lifetime, red-shift of 2PA spectra and larger δ(max). The absorption and emission bands are highly dependent on the nature of the active building blocks. The aromatic rings attached to pyrrole can modulate the absorption peaks in the high energy and thus subtly modify the electronic properties.
基于 N-芳基吡咯的染料具有优异的光电性能,是双光子荧光标记材料的有前途的候选物。对新型 N-芳基吡咯衍生物的系统研究对于精细调整电子光谱和设计双光子吸收(2PA)材料都非常重要。我们深入研究了π共轭中心和 N-取代吡咯部分对线性光学和 2PA 性质的影响。结果表明,引入 N-芳基吡咯会使吸收和发射带发生红移,并增强 2PA 截面(δ(max)),表明富电子吡咯部分可以有效地增加分子内电荷转移。用苯并噻二唑取代芴产生较低的能隙、较高的发射寿命、2PA 光谱的红移和更大的δ(max)。吸收和发射带高度依赖于活性构建块的性质。连接到吡咯上的芳环可以调节高能吸收峰,从而微妙地改变电子性质。