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Effect of Aryl-, Halogen-, and Ms-Aza-Substitution on the Luminescent Properties and Photostability of Difluoroborates of 2,2'-Dipyrrometenes

Overview
Journal J Fluoresc
Specialties Biophysics
Chemistry
Date 2019 Jun 27
PMID 31240540
Citations 4
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Abstract

Boron(III) complexes with alkyl-, phenyl-, and halogen-substituted 2,2'-dipyrromethenes (BODIPY) and meso-aza-dipyrrometenes (ms-aza-BODIPY) were synthesized. The structure relationship of the obtained coordination compounds with their luminescent characteristics is analyzed. Arylated BODIPY, in contrast to alkyl-substituted analogs, is more sensitive to interparticle interactions with a solvent, causing a decrease in the quantum yield by up to 40%. The introduction of phenyl substituents into the BODIPY molecule shifts the first absorption band bathochromic, significantly (32-37 nm) increases the Stokes shift in the emission spectrum, but reduces the probability of the S → S electronic transition as compared to alkylated complexes. Replacing the methine carbon atom with nitrogen leads to quenching of ms-aza-BODIPY fluorescence compared to BODIPY up to 5-20%. The stability of 2,2'-dipyrromethenes difluoroborates to oxidative destruction under the influence of UV irradiation in cyclohexane solutions was evaluated. It has been shown that symmetric aryl substitution in pyrrole cycles of dipyrromethene significantly increases the photostability of the corresponding compounds as compared to alkyl-substituted analogs and is an effective method of obtaining boron (III) dipyrromethenates with practically useful properties. It has been established that the replacement of the methin ms-spacer of dipyrromethene by a nitrogen atom significantly reduces the photostability of ms-aza-dipyrromethenates of boron. Halogenation of β-positions of pyrrole cycles by a factor of 5-8 reduces the photostability of difluoroborates ms-aza-dipyrromethenes in comparison with a non-halogenated analogue.

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References
1.
Zhao G, Han K . Early time hydrogen-bonding dynamics of photoexcited coumarin 102 in hydrogen-donating solvents: theoretical study. J Phys Chem A. 2007; 111(13):2469-74. DOI: 10.1021/jp068420j. View

2.
Zhao G, Liu J, Zhou L, Han K . Site-selective photoinduced electron transfer from alcoholic solvents to the chromophore facilitated by hydrogen bonding: a new fluorescence quenching mechanism. J Phys Chem B. 2007; 111(30):8940-5. DOI: 10.1021/jp0734530. View

3.
Lim S, Thivierge C, Nowak-Sliwinska P, Han J, van den Bergh H, Wagnieres G . In vitro and in vivo photocytotoxicity of boron dipyrromethene derivatives for photodynamic therapy. J Med Chem. 2010; 53(7):2865-74. DOI: 10.1021/jm901823u. View

4.
Lincoln R, Durantini A, Greene L, Martinez S, Knox R, Becerra M . meso-Acetoxymethyl BODIPY dyes for photodynamic therapy: improved photostability of singlet oxygen photosensitizers. Photochem Photobiol Sci. 2016; 16(2):178-184. DOI: 10.1039/c6pp00166a. View

5.
Zhao G, Han K . Hydrogen bonding in the electronic excited state. Acc Chem Res. 2011; 45(3):404-13. DOI: 10.1021/ar200135h. View