Department of Chemistry, Faculty of Science, Ankara University, Anadolu, 06100, Ankara, Turkey.
Department of Chemistry, Faculty of Science and Literature, Bilecik Şeyh Edebali University, 11230, Bilecik, Turkey.
J Fluoresc. 2021 Jan;31(1):151-164. doi: 10.1007/s10895-020-02646-4. Epub 2020 Nov 10.
Novel symmetrical aza-borondipyrromethene (aza-BODIPY) compounds bearing 4-methoxyphenyl, 4-methoxybiphenyl, 2,4-dimethoxybipheny, 4-bromophenyl and N,N-diphenyl-4-biphenylamine groups on the 3, 3,5 and 2,6 positions of aza-BODIPY core were synthesized via Suzuki-Miyaura coupling reactions while unsymmetrical analogues were obtained from the starting mono Br-substituted aza-BODIPY material which was obtained from nitrosolated pyrrole derivative. The characterizations were performed by means of H-NMR, C-NMR, FTIR and HRMS-TOF-ESI techniques. The spectral properties of the aza-BODIPY derivatives were investigated using absorption and fluorescence spectroscopy. The novel compounds with extended conjugation have broadband absorption in near infrared region and show significant shifts on their absorption and fluorescence spectra compared to unsubstituted analogues. The highest bathochromic shifts were observed π-extended and strong electron donating groups at 3,5 positions of the aza-BODIPY scaffold. Depend on substitution positions of attached groups to the indacene core, the fluorescence quantum yields of chromophores were determined to be drastic changes. The singlet oxygen generation capability of the compounds were evaluated and 2,6-bromine substituted compounds AA1 and CC1 showed high singlet oxygen quantum yields (71% and 74%, respectively). Enhanced photophysical properties such as intense absorption, extended conjugation and singlet oxygen production make the investigated aza-BODIPYs promising candidates for photodynamic therapy applications and organic photovoltaic cells in NIR region.
新型对称的氮杂苯并二吡咯甲川(aza-BODIPY)化合物,其 3、3、5 和 2、6 位取代基分别为 4-甲氧基苯基、4-甲氧基联苯、2、4-二甲氧基联苯、4-溴苯基和 N,N-二苯基-4-联苯胺,通过 Suzuki-Miyaura 偶联反应合成,而不对称类似物则是由起始的单 Br 取代的 aza-BODIPY 材料获得,该材料是由硝基亚咯衍生物获得的。通过 H-NMR、C-NMR、FTIR 和 HRMS-TOF-ESI 技术对其进行了表征。通过吸收和荧光光谱研究了 aza-BODIPY 衍生物的光谱性质。新型化合物具有扩展的共轭结构,在近红外区域具有宽带吸收,并表现出与未取代类似物相比,其吸收和荧光光谱有明显的位移。在 aza-BODIPY 支架的 3、5 位引入π-扩展和强供电子基团时,观察到最高的红移。根据取代基在茚并核心上的取代位置,发色团的荧光量子产率发生了显著变化。评估了化合物的单线态氧生成能力,发现 2、6-溴取代的化合物 AA1 和 CC1 具有较高的单线态氧量子产率(分别为 71%和 74%)。增强的光物理性质,如强烈的吸收、扩展的共轭和单线态氧的产生,使所研究的 aza-BODIPYs 成为近红外光动力治疗应用和有机光伏电池的有前途的候选物。