Sevinç Gökhan, Doğan Emine, Mansuroğlu Sina, Gurbanov Rafig
Faculty of Science, Department of Chemistry, Bilecik Seyh Edebali University, TR, 11100, Bilecik, Turkey.
Department of Bioengineering, Bilecik Seyh Edebali University, Engineering Faculty, TR, 11100, Bilecik, Turkey.
J Fluoresc. 2025 Apr;35(4):2347-2363. doi: 10.1007/s10895-024-03688-8. Epub 2024 Apr 8.
Herein, a series of new BODIPY dyes substituted by 2-phenyl benzimidazole units at the meso (C8) position including methyl/ethyl, phenyl, or p-methoxyphenyl moieties at the distal and proximal positions of the BODIPY core have been successfully synthesized and their photophysical characteristics were analyzed. Experimentally investigating absorption and fluorescence profiles in the THF media was followed by density functional theory (DFT) calculations to clarify photophysical features. Theoretical analyses have revealed that upon excitation, both electrons and holes are confined solely within the BODIPY core. The energy levels of the frontier molecular orbitals converge depending on the presence of the phenyl and p-methoxyphenyl substituents. The orbital distributions of both electron and hole were in the -3 and -5 positions, which demonstrates a continuous conjugation with the BODIPY core at these sites. However, the electron density present on the phenyl rings located at the -1, -7, and -8 (meso) positions was found to be negligible. The benzimidazole-BODIPYs exhibited photodynamic activity (Φ) ranging from ~ 7% to ~ 11%, determined by a comparative method. Moreover, the compounds have shown to maintain their stability thermally in a non-reactive/inert environment up to temperatures surpassing 300 °C, exhibiting primarily a two-phase decomposition process. These compounds have the potential to function as antibacterial and anti-biofilm agents when used in concentrations ranging from 0.5 to 2.0 mg/mL. The results provide a basis for evaluating heterocyclic benzimidazole units on photophysical processes containing BODIPY chromophores.
在此,一系列在中位(C8)位置被2-苯基苯并咪唑单元取代的新型BODIPY染料已成功合成,这些染料在BODIPY核的远端和近端位置包含甲基/乙基、苯基或对甲氧基苯基部分,并对其光物理特性进行了分析。在四氢呋喃介质中对吸收和荧光光谱进行实验研究后,通过密度泛函理论(DFT)计算来阐明光物理特征。理论分析表明,激发时,电子和空穴都仅局限于BODIPY核内。前沿分子轨道的能级根据苯基和对甲氧基苯基取代基的存在而收敛。电子和空穴的轨道分布都在-3和-5位置,这表明在这些位置与BODIPY核存在连续共轭。然而,发现在-1、-7和-8(中位)位置的苯环上存在的电子密度可忽略不计。通过比较法测定,苯并咪唑-BODIPY表现出的光动力活性(Φ)范围为7%至11%。此外,这些化合物在非反应性/惰性环境中热稳定性良好,直至温度超过300°C,主要呈现两相分解过程。当以0.5至2.0mg/mL的浓度使用时,这些化合物有潜力用作抗菌和抗生物膜剂。这些结果为评估含BODIPY发色团的光物理过程中的杂环苯并咪唑单元提供了依据。