Zuo Jingyao, Liu Kanglei, Harrell Jaren, Fang Lujia, Piotrowiak Piotr, Shimoyama Daisuke, Lalancette Roger A, Jäkle Frieder
Department of Chemistry, Rutgers, The State University-Newark, 73 Warren Street, Newark, NJ 07102, USA.
Angew Chem Int Ed Engl. 2024 Nov 4;63(45):e202411855. doi: 10.1002/anie.202411855. Epub 2024 Sep 2.
Acenes are attractive as building blocks for low gap organic materials with applications, for example, in organic light emitting diodes, solar cells, bioimaging and diagnostics. Previously, we have shown that modification of dipyridylanthracene via B-N Lewis pair fusion (BDPA) strongly redshifts the emission, while facilitating self-sensitized reactivity toward O to reversibly generate the corresponding endoperoxides. Herein, we report on the further expansion of the π-system of BDPA to a vinyl-substituted monomer, vinylene-bridged dimer, and a polymer with an average of 20 chromophores. The extension of π-conjugation results in largely reduced band gaps of 1.8 eV for the dimer and 1.7 eV for the polymer, the latter giving rise to NIR emission with a maximum at 731 nm and an appreciable quantum yield of 7 %. Electrochemical and computational studies reveal efficient delocalization of the lowest unoccupied molecular orbital (LUMO) along the pyridyl-anthracene-pyridyl axis, which results in effective electronic communication between BDPA units, selectively lowers the LUMO, and ultimately narrows the band gap. Time-resolved emission and transient absorption (TA) measurements offer insights into the pertinent photophysical processes. Extension of π-conjugation also slows down the self-sensitized formation of endoperoxides, while significantly accelerating the thermal release of singlet oxygen to regenerate the parent acenes.
并苯作为低带隙有机材料的构建单元具有吸引力,可应用于有机发光二极管、太阳能电池、生物成像和诊断等领域。此前,我们已经表明,通过B-N路易斯对融合对二吡啶并蒽进行修饰(BDPA)会使发射强烈红移,同时促进对O的自敏化反应,以可逆地生成相应的内过氧化物。在此,我们报道了将BDPA的π体系进一步扩展为乙烯基取代的单体、亚乙烯基桥连的二聚体和平均含有20个发色团的聚合物。π共轭的扩展导致二聚体的带隙大幅降低至1.8 eV,聚合物的带隙为1.7 eV,后者产生最大波长为731 nm的近红外发射,量子产率可观,为7%。电化学和计算研究表明,最低未占据分子轨道(LUMO)沿吡啶-蒽-吡啶轴有效离域,这导致BDPA单元之间进行有效的电子通信,选择性地降低LUMO,并最终缩小带隙。时间分辨发射和瞬态吸收(TA)测量为相关的光物理过程提供了见解。π共轭的扩展还减缓了内过氧化物的自敏化形成,同时显著加速了单线态氧的热释放,以再生母体并苯。