Boosting the singlet oxygen photosensitization abilities of Zn(ii) phthalocyanines through functionalization with bulky fluorinated substituents
Entity
UAM. Departamento de Química OrgánicaPublisher
Royal Society of ChemistryDate
2019-08-28Citation
10.1039/c9ob00872a
Organic and Biomolecular Chemistry 17.32 (2019): 7448-7454
ISSN
1477-0520 (print); 1477-0539 (online)DOI
10.1039/c9ob00872aFunded by
This work was supported by MINECO (CTQ2017-85393-P and CTQ2016-78454-C2-1-R) and ERA-NET/MINECO EuroNanoMed2017-191/PCIN-2017-042Project
Gobierno de España. CTQ2017-85393-P; Gobierno de España. CTQ2016-78454-C2-1-R; info:eu-repo/grantAgreement/EC/H2020/723770/EU//EuroNanoMed IIIEditor's Version
https://doi.org/10.1039/C9OB00872ASubjects
Fluorescence; Quantum yield; Zinc compounds; Oxygen; QuímicaRights
© 2019 The Royal Society of ChemistryAbstract
In-depth, systematic photophysical studies have been performed on a series of ABAB, A3B and A4 ZnPcs functionalized with a varying number of bis(trifluoromethyl)phenyl units (i.e. at the B isoindoles) and other electron-withdrawing/electron-donating moieties (i.e. at the A isoindoles), to determine the influence of the susbtitution pattern on the aggregation features, fluorescence quantum yields and singlet oxygen (1O2) generation abilities of these molecules. As a general trend, the larger the number of bis(trifluoromethyl)phenyl units (i.e.ABAB crosswise functionalized ZnPcs), the lower the fluorescence quantum yield and the higher the 1O2 photosensitization. On the other hand, the electronic character of the substituents at the A isoindoles do not seem to have a clear effect on the photophysical properties of these ABAB ZnPcs. Overall, 1O2 quantum yields determined by the direct observation of the 1O2 phosphorescence are very high, with values ranging from 1 to 0.74 in THF solutions
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Google Scholar:Revuelta-Maza, Miguel A.
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Nonell, Santi
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Torre Ponce, Gema de la
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Torres Cebada, Tomás
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