Instituto Química-Física Rocasolano, C.S.I.C. Serrano 119, 28006 Madrid, Spain.
Chemistry. 2011 Nov 18;17(47):13258-68. doi: 10.1002/chem.201100512. Epub 2011 Oct 20.
New hybrid organic-inorganic dyes based on an azide-functionalized cubic octasilsesquioxane (POSS) as the inorganic part and a 4,4-difluoro-4-bora-3a,4a-diaza-s-indacene (BDP) chromophore as the organic component have been synthesized by copper(I)-catalyzed 1,3-dipolar cycloaddition of azides to alkynes. We have studied the effects of the linkage group of BDP to the POSS unit and the degree of functionalization of this inorganic core on the ensuing optical properties by comparison with model dyes. The high fluorescence of the BDP dye is preserved in spite of the linked chain at its meso position, even after attaching one BDP moiety to the POSS core. The laser action of the new dyes has been analyzed under transversal pumping at 532 nm in both the liquid phase and when incorporated into solid polymeric matrices. The monosubstituted new hybrid dye exhibits high lasing efficiency of up to 56 % with high photostability, with its laser output remaining at the initial value after 4×10(5) pump pulses in the same position of the sample at a repetition rate of 30 Hz. However, functionalization of the POSS core with eight fluorophores leads to dye aggregation, as quantum mechanical simulation has revealed, worsening the optical properties and extinguishing the laser action. The new hybrid systems based on dye-linked POSS nanoparticles open up the possibility of using these new photonic materials as alternative sources for optoelectronic devices, competing with dendronized or grafted polymers.
新型杂化有机-无机染料以叠氮功能化的立方八硅倍半氧烷(POSS)作为无机部分和 4,4-二氟-4-硼-3a,4a-二氮杂-s-茚(BDP)发色团作为有机部分合成,通过铜(I)催化叠氮化物与炔烃的 1,3-偶极环加成反应。我们通过与模型染料进行比较,研究了 BDP 与 POSS 单元的连接基团和该无机核的官能化程度对后续光学性质的影响。尽管在介位连接了链,但 BDP 染料的高荧光仍得以保留,即使在 POSS 核上连接了一个 BDP 部分。在 532nm 的横向泵浦下,对新染料在液相和掺入固态聚合物基质中的激光作用进行了分析。单取代的新型杂化染料表现出高达 56%的高激光效率和高光稳定性,其激光输出在 30Hz 的重复率下在相同位置的样品上经过 4×10(5)次泵浦脉冲后仍保持在初始值。然而,POSS 核的官能化与八个荧光团导致染料聚集,正如量子力学模拟所揭示的那样,这会恶化光学性质并熄灭激光作用。基于染料连接 POSS 纳米粒子的新型杂化系统为使用这些新型光子材料作为光电设备的替代光源开辟了可能性,与树枝状或接枝聚合物竞争。