Synthesis and photophysical properties of π-extended carboxyl BODIPYs: An experimental and theoretical study

被引:0
作者
Sevinc, Gokhan [1 ]
Yildiz, Elif Akhuseyin [2 ]
Taskiran, Zeliha Pinar [1 ]
Karatay, Ahmet [2 ]
机构
[1] Bilecik Seyh Edebali Univ, Fac Sci, Dept Chem, TR-11100 Bilecik, Turkiye
[2] Ankara Univ, Fac Engn, Dept Engn Phys, TR-06100 Ankara, Turkiye
关键词
Absorption; Carboxy-BODIPY; DFT; Fluorescence spectroscopy; Charge transfer; DYES; FLUORESCENCE;
D O I
10.1016/j.dyepig.2025.112776
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
A series of new boron-dipyrromethenes (BODIPYs) bearing 4-carboxyphenyl unit at the meso (8) position of the BODIPY core have been successfully synthesized through the reactions of 2,4-diaryl substituted pyrroles with 4formylbenzoic acid. The palladium-catalyzed Suzuki-Miyaura coupling reactions were performed on the meso unsubstituted BODIPY derivatives with 4-carboxyphenyl boronic acid to obtain distal and proximal substitution. Chemical structures were characterized using high resolution mass spectrometry (HRMS), 1H/13C NMR, and FTIR spectroscopy. The photophysical properties, excited state dynamics, and thermal degradation profiles were investigated in terms of aromatic subunits using electronic absorption/fluorescence measurements, femtosecond transient absorption spectroscopy, and thermogravimetric analysis (TGA), respectively. Experimentally investigated absorption and fluorescence properties, as well as structural features, were clarified using density functional theory (DFT) and electron-hole analysis. The absorption of the compounds ranges from 504 to 594 nm, and their emission ranges from 609 to 640 nm, depending on the aromatic groups at the BODIPY core. Performed pump probe spectroscopy measurements revealed that the excited state lifetime is shortened for 3,5 (proximal) positions compared to 1,7 (distal) positions due to increasing interactions between the molecular orbitals. The local n-pi and pi-pi* excitations from DFT calculations and electron-hole analysis mainly characterize the electronic transitions, leading to limited intramolecular charge transfer to the BODIPY core. Charge transfer is highest at the 3,5-positions, decreases at the meso (8) position, and is lowest at the 1,7-positions of the BODIPY core. The newly developed BODIPYs with carboxyl groups show potential as agents in applications demanding extensive absorption and strong emission characteristics.
引用
收藏
页数:13
相关论文
共 46 条
[1]  
Ozcan E., Kazan H.H., Cosut B., Recent chemo-/biosensor and bioimaging studies based on indole-decorated BODIPYs, Luminescence, 35, pp. 168-177, (2020)
[2]  
Donnelly J.L., Offenbartl-Stiegert D., Marin-Beloqui J.M., Rizzello L., Battaglia G., Clarke T.M., Et al., Exploring the relationship between BODIPY structure and spectroscopic properties to design fluorophores for bioimaging, Chem Eur J, 26, pp. 863-872, (2020)
[3]  
Kaur P., Singh K., Recent advances in the application of BODIPY in bioimaging and chemosensing, J Mater Chem C Mater, 7, pp. 11361-11405, (2019)
[4]  
Malacarne M.C., Gariboldi M.B., Caruso E., BODIPYs in PDT: a journey through the most interesting molecules produced in the last 10 years, Int J Mol Sci, 23, (2022)
[5]  
Prieto-Montero R., Prieto-Castaneda A., Sola-Llano R., Agarrabeitia A.R., Garcia-Fresnadillo D., Lopez-Arbeloa I., Et al., Exploring BODIPY derivatives as singlet oxygen photosensitizers for PDT, Photochem Photobiol, 96, pp. 458-477, (2020)
[6]  
Awuah S.G., You Y., Boron dipyrromethene (BODIPY)-based photosensitizers for photodynamic therapy, RSC Adv, 2, pp. 11169-11183, (2012)
[7]  
Kamkaew A., Lim S.H., Lee H.B., Kiew L.V., Chung L.Y., Burgess K., BODIPY dyes in photodynamic therapy, Chem Soc Rev, 42, pp. 77-88, (2013)
[8]  
Wang L., Ding H., Ran X., Tang H., Cao D., Recent progress on reaction-based BODIPY probes for anion detection, Dyes Pigments, 172, (2020)
[9]  
Bumagina N.A., Antina E.V., Review of advances in development of fluorescent BODIPY probes (chemosensors and chemodosimeters) for cation recognition, Coord Chem Rev, 505, (2024)
[10]  
Xia H.-C., Xu X.-H., Song Q.-H., BODIPY-based fluorescent sensor for the recognization of phosgene in solutions and in gas phase, Anal Chem, 89, pp. 4192-4197, (2017)