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Photophysical Properties and Electronic Structure of Zinc(II) Porphyrins Bearing 0-4 meso -Phenyl Substituents: Zinc Porphine to Zinc Tetraphenylporphyrin (ZnTPP).

Authors :
Magdaong NCM
Taniguchi M
Diers JR
Niedzwiedzki DM
Kirmaier C
Lindsey JS
Bocian DF
Holten D
Source :
The journal of physical chemistry. A [J Phys Chem A] 2020 Sep 24; Vol. 124 (38), pp. 7776-7794. Date of Electronic Publication: 2020 Sep 14.
Publication Year :
2020

Abstract

Six zinc(II) porphyrins bearing 0-4 meso -phenyl substituents have been examined spectroscopically and theoretically. Comparisons with previously examined free base analogues afford a deep understanding of the electronic and photophysical effects of systematic addition of phenyl groups in porphyrins containing a central zinc(II) ion versus two hydrogen atoms. Trends in the wavelengths and relative intensities of the absorption bands are generally consistent with predictions from time-dependent density functional theory calculations and simulations from Gouterman's four-orbital model. These trends derive from a preferential effect of the meso -phenyl groups to raise the energy of the highest occupied molecular orbital. The calculations reveal additional insights, such as a progressive increase in oscillator strength in the violet-red (B-Q) absorption manifold with increasing number of phenyls. Progressive addition of 0-4 phenyl substituents to the zinc porphyrins in O <subscript>2</subscript> -free toluene engenders a reduction in the measured lifetime of the lowest singlet excited state (2.5-2.1 ns), an increase in the S <subscript>1</subscript> → S <subscript>0</subscript> fluorescence yield (0.022-0.030), a decrease in the yield of S <subscript>1</subscript> → T <subscript>1</subscript> intersystem crossing (0.93-0.88), and an increase in the yield of S <subscript>1</subscript> → S <subscript>0</subscript> internal conversion (0.048-0.090). The derived rate constants for S <subscript>1</subscript> decay reveal significant differences in the photophysical properties of the zinc chelates versus free base forms. The unexpected finding of a larger rate constant for internal conversion for zinc chelates versus free bases is particularly exemplary. Collectively, the findings afford fundamental insights into the photophysical properties and electronic structure of meso -phenylporphyrins, which are widely used as benchmarks for tetrapyrrole-based architectures in solar energy and life sciences research.

Details

Language :
English
ISSN :
1520-5215
Volume :
124
Issue :
38
Database :
MEDLINE
Journal :
The journal of physical chemistry. A
Publication Type :
Academic Journal
Accession number :
32926787
Full Text :
https://doi.org/10.1021/acs.jpca.0c06841