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CAS: 945921-51-7
MF: C20H9BN2O2F2-.H+
MW: 359.1134
Synonyms:

REPORT BY

Allen J. Bard

The University of Texas at Austin
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Kent R. Mann

University of Minnesota
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Kim R. Dunbar

Texas A&M University
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Ronald L. Halterman

University of Oklahoma
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Wai Tak Yip

University of Oklahoma
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Ahmed El-Shafei

North Carolina State University
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Ji-Huai Wu

Huaqiao University
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Zhixin Zhao

Huazhong University of Science and Technology
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Francis D'Souza

University of North Texas
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Co-reporter: Christopher O. Obondi, Gary N. Lim, Paul A. Karr, Vladimir N. Nesterov and Francis D'Souza  
pp: 18187-18200
Publication Date(Web):15 Jun 2016
DOI: 10.1039/C6CP03479A
A new series of multi-modular donor–acceptor systems capable of exhibiting photoinduced charge separation have been designed, synthesized and characterized using various techniques. In this series, the electron donor was a BF2-chelated dipyrromethene (BODIPY) appended with two styryl linkers carrying two electron rich triphenylamine or phenothiazine entities. Fulleropyrrolidine linked at the meso-position of the BODIPY ring served as an electron acceptor. As a result of extended conjugation and multiple electroactive chromophore entities, the bis-styryl BODIPY revealed absorbance and emission well-into the near-infrared region covering a 300–850 nm spectral range. Using redox, computational, absorbance and emission data, an energy level diagram was constructed that helped in envisioning the different photochemical events. Spectral evidence for photoinduced charge separation in these systems was established from femtosecond and nanosecond transient absorption studies. The measured rate constants indicated fast charge separation and relatively slow charge recombination revealing their usefulness in light energy harvesting and optoelectronic device building applications. The bis(donor styryl)BODIPY–fullerene systems populated BODIPY triplet excited states during the process of charge recombination.
Co-reporter: Christopher O. Obondi, Gary N. Lim, Paul A. Karr, Vladimir N. Nesterov and Francis D'Souza
pp: NaN18200-18200
Publication Date(Web):2016/06/15
DOI: 10.1039/C6CP03479A
A new series of multi-modular donor–acceptor systems capable of exhibiting photoinduced charge separation have been designed, synthesized and characterized using various techniques. In this series, the electron donor was a BF2-chelated dipyrromethene (BODIPY) appended with two styryl linkers carrying two electron rich triphenylamine or phenothiazine entities. Fulleropyrrolidine linked at the meso-position of the BODIPY ring served as an electron acceptor. As a result of extended conjugation and multiple electroactive chromophore entities, the bis-styryl BODIPY revealed absorbance and emission well-into the near-infrared region covering a 300–850 nm spectral range. Using redox, computational, absorbance and emission data, an energy level diagram was constructed that helped in envisioning the different photochemical events. Spectral evidence for photoinduced charge separation in these systems was established from femtosecond and nanosecond transient absorption studies. The measured rate constants indicated fast charge separation and relatively slow charge recombination revealing their usefulness in light energy harvesting and optoelectronic device building applications. The bis(donor styryl)BODIPY–fullerene systems populated BODIPY triplet excited states during the process of charge recombination.

Long Yi

Beijing University of Chemical Technology
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