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Electronic Delocalization in the Radical Cations of Porphyrin Oligomer Molecular Wires

[Image: see text] The radical cations of a family of π-conjugated porphyrin arrays have been investigated: linear chains of N = 1–6 porphyrins, a 6-porphyrin nanoring and a 12-porphyrin nanotube. The radical cations were generated in solution by chemical and electrochemical oxidation, and probed by...

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Autores principales: Peeks, Martin D., Tait, Claudia E., Neuhaus, Patrik, Fischer, Georg M., Hoffmann, Markus, Haver, Renée, Cnossen, Arjen, Harmer, Jeffrey R., Timmel, Christiane R., Anderson, Harry L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2017
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5543395/
https://www.ncbi.nlm.nih.gov/pubmed/28678489
http://dx.doi.org/10.1021/jacs.7b05386
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author Peeks, Martin D.
Tait, Claudia E.
Neuhaus, Patrik
Fischer, Georg M.
Hoffmann, Markus
Haver, Renée
Cnossen, Arjen
Harmer, Jeffrey R.
Timmel, Christiane R.
Anderson, Harry L.
author_facet Peeks, Martin D.
Tait, Claudia E.
Neuhaus, Patrik
Fischer, Georg M.
Hoffmann, Markus
Haver, Renée
Cnossen, Arjen
Harmer, Jeffrey R.
Timmel, Christiane R.
Anderson, Harry L.
author_sort Peeks, Martin D.
collection PubMed
description [Image: see text] The radical cations of a family of π-conjugated porphyrin arrays have been investigated: linear chains of N = 1–6 porphyrins, a 6-porphyrin nanoring and a 12-porphyrin nanotube. The radical cations were generated in solution by chemical and electrochemical oxidation, and probed by vis–NIR–IR and EPR spectroscopies. The cations exhibit strong NIR bands at ∼1000 nm and 2000–5000 nm, which shift to longer wavelength with increasing oligomer length. Analysis of the NIR and IR spectra indicates that the polaron is delocalized over 2–3 porphyrin units in the linear oligomers. Some of the IR vibrational bands are strongly intensified on oxidation, and Fano-type antiresonances are observed when activated vibrations overlap with electronic transitions. The solution-phase EPR spectra of the radical cations have Gaussian lineshapes with linewidths proportional to N(–0.5), demonstrating that at room temperature the spin hops rapidly over the whole chain on the time scale of the hyperfine coupling (ca. 100 ns). Direct measurement of the hyperfine couplings through electron–nuclear double resonance (ENDOR) in frozen solution (80 K) indicates distribution of the spin over 2–3 porphyrin units for all the oligomers, except the 12-porphyrin nanotube, in which the spin is spread over about 4–6 porphyrins. These experimental studies of linear and cyclic cations give a consistent picture, which is supported by DFT calculations and multiparabolic modeling with a reorganization energy of 1400–2000 cm(–1) and coupling of 2000 cm(–1) for charge transfer between neighboring sites, placing the system in the Robin–Day class III.
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spelling pubmed-55433952017-08-07 Electronic Delocalization in the Radical Cations of Porphyrin Oligomer Molecular Wires Peeks, Martin D. Tait, Claudia E. Neuhaus, Patrik Fischer, Georg M. Hoffmann, Markus Haver, Renée Cnossen, Arjen Harmer, Jeffrey R. Timmel, Christiane R. Anderson, Harry L. J Am Chem Soc [Image: see text] The radical cations of a family of π-conjugated porphyrin arrays have been investigated: linear chains of N = 1–6 porphyrins, a 6-porphyrin nanoring and a 12-porphyrin nanotube. The radical cations were generated in solution by chemical and electrochemical oxidation, and probed by vis–NIR–IR and EPR spectroscopies. The cations exhibit strong NIR bands at ∼1000 nm and 2000–5000 nm, which shift to longer wavelength with increasing oligomer length. Analysis of the NIR and IR spectra indicates that the polaron is delocalized over 2–3 porphyrin units in the linear oligomers. Some of the IR vibrational bands are strongly intensified on oxidation, and Fano-type antiresonances are observed when activated vibrations overlap with electronic transitions. The solution-phase EPR spectra of the radical cations have Gaussian lineshapes with linewidths proportional to N(–0.5), demonstrating that at room temperature the spin hops rapidly over the whole chain on the time scale of the hyperfine coupling (ca. 100 ns). Direct measurement of the hyperfine couplings through electron–nuclear double resonance (ENDOR) in frozen solution (80 K) indicates distribution of the spin over 2–3 porphyrin units for all the oligomers, except the 12-porphyrin nanotube, in which the spin is spread over about 4–6 porphyrins. These experimental studies of linear and cyclic cations give a consistent picture, which is supported by DFT calculations and multiparabolic modeling with a reorganization energy of 1400–2000 cm(–1) and coupling of 2000 cm(–1) for charge transfer between neighboring sites, placing the system in the Robin–Day class III. American Chemical Society 2017-07-05 2017-08-02 /pmc/articles/PMC5543395/ /pubmed/28678489 http://dx.doi.org/10.1021/jacs.7b05386 Text en Copyright © 2017 American Chemical Society This is an open access article published under a Creative Commons Attribution (CC-BY) License (http://pubs.acs.org/page/policy/authorchoice_ccby_termsofuse.html) , which permits unrestricted use, distribution and reproduction in any medium, provided the author and source are cited.
spellingShingle Peeks, Martin D.
Tait, Claudia E.
Neuhaus, Patrik
Fischer, Georg M.
Hoffmann, Markus
Haver, Renée
Cnossen, Arjen
Harmer, Jeffrey R.
Timmel, Christiane R.
Anderson, Harry L.
Electronic Delocalization in the Radical Cations of Porphyrin Oligomer Molecular Wires
title Electronic Delocalization in the Radical Cations of Porphyrin Oligomer Molecular Wires
title_full Electronic Delocalization in the Radical Cations of Porphyrin Oligomer Molecular Wires
title_fullStr Electronic Delocalization in the Radical Cations of Porphyrin Oligomer Molecular Wires
title_full_unstemmed Electronic Delocalization in the Radical Cations of Porphyrin Oligomer Molecular Wires
title_short Electronic Delocalization in the Radical Cations of Porphyrin Oligomer Molecular Wires
title_sort electronic delocalization in the radical cations of porphyrin oligomer molecular wires
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5543395/
https://www.ncbi.nlm.nih.gov/pubmed/28678489
http://dx.doi.org/10.1021/jacs.7b05386
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