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PAH/PAH(CF(3))(n) Donor/Acceptor Charge‐Transfer Complexes in Solution and in Solid‐State Co‐Crystals

A solution, solid‐state, and computational study is reported of polycyclic aromatic hydrocarbon PAH/PAH(CF(3))(n) donor/acceptor (D/A) charge‐transfer complexes that involve six PAH(CF(3))(n) acceptors with known gas‐phase electron affinities that range from 2.11(2) to 2.805(15) eV and four PAH dono...

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Autores principales: Castro, Karlee P., Bukovsky, Eric V., Kuvychko, Igor V., DeWeerd, Nicholas J., Chen, Yu‐Sheng, Deng, Shihu H. M., Wang, Xue‐Bin, Popov, Alexey A., Strauss, Steven H., Boltalina, Olga V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6916568/
https://www.ncbi.nlm.nih.gov/pubmed/31381207
http://dx.doi.org/10.1002/chem.201902712
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author Castro, Karlee P.
Bukovsky, Eric V.
Kuvychko, Igor V.
DeWeerd, Nicholas J.
Chen, Yu‐Sheng
Deng, Shihu H. M.
Wang, Xue‐Bin
Popov, Alexey A.
Strauss, Steven H.
Boltalina, Olga V.
author_facet Castro, Karlee P.
Bukovsky, Eric V.
Kuvychko, Igor V.
DeWeerd, Nicholas J.
Chen, Yu‐Sheng
Deng, Shihu H. M.
Wang, Xue‐Bin
Popov, Alexey A.
Strauss, Steven H.
Boltalina, Olga V.
author_sort Castro, Karlee P.
collection PubMed
description A solution, solid‐state, and computational study is reported of polycyclic aromatic hydrocarbon PAH/PAH(CF(3))(n) donor/acceptor (D/A) charge‐transfer complexes that involve six PAH(CF(3))(n) acceptors with known gas‐phase electron affinities that range from 2.11(2) to 2.805(15) eV and four PAH donors, including seven CT co‐crystal X‐ray structures that exhibit hexagonal arrays of mixed π‐stacks with 1/1, 1/2, or 2/1 D/A stoichiometries (PAH=anthracene, azulene, coronene, perylene, pyrene, triphenylene; n=5, 6). These are the first D/A CT complexes with PAH(CF(3))(n) acceptors to be studied in detail. The nine D/A combinations were chosen to allow several structural and electronic comparisons to be made, providing new insights about controlling D/A interactions and the structures of CT co‐crystals. The comparisons include, among others, CT complexes of the same PAH(CF(3))(n) acceptor with four PAH donors and CT complexes of the same donor with four PAH(CF(3))(n) acceptors. All nine CT complexes exhibit charge‐transfer bands in solution with λ (max) between 467 and 600 nm. A plot of E(λ (max)) versus [IE(donor)−EA(acceptor)] for the nine CT complexes studied is linear with a slope of 0.72±0.03 eV eV(−1). This plot is the first of its kind for CT complexes with structurally related donors and acceptors for which precise experimental gas‐phase IEs and EAs are known. It demonstrates that conclusions based on the common assumption that the slope of a CT E(λ (max)) versus [IE−EA] plot is unity may be incorrect in at least some cases and should be reconsidered.
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spelling pubmed-69165682019-12-23 PAH/PAH(CF(3))(n) Donor/Acceptor Charge‐Transfer Complexes in Solution and in Solid‐State Co‐Crystals Castro, Karlee P. Bukovsky, Eric V. Kuvychko, Igor V. DeWeerd, Nicholas J. Chen, Yu‐Sheng Deng, Shihu H. M. Wang, Xue‐Bin Popov, Alexey A. Strauss, Steven H. Boltalina, Olga V. Chemistry Full Papers A solution, solid‐state, and computational study is reported of polycyclic aromatic hydrocarbon PAH/PAH(CF(3))(n) donor/acceptor (D/A) charge‐transfer complexes that involve six PAH(CF(3))(n) acceptors with known gas‐phase electron affinities that range from 2.11(2) to 2.805(15) eV and four PAH donors, including seven CT co‐crystal X‐ray structures that exhibit hexagonal arrays of mixed π‐stacks with 1/1, 1/2, or 2/1 D/A stoichiometries (PAH=anthracene, azulene, coronene, perylene, pyrene, triphenylene; n=5, 6). These are the first D/A CT complexes with PAH(CF(3))(n) acceptors to be studied in detail. The nine D/A combinations were chosen to allow several structural and electronic comparisons to be made, providing new insights about controlling D/A interactions and the structures of CT co‐crystals. The comparisons include, among others, CT complexes of the same PAH(CF(3))(n) acceptor with four PAH donors and CT complexes of the same donor with four PAH(CF(3))(n) acceptors. All nine CT complexes exhibit charge‐transfer bands in solution with λ (max) between 467 and 600 nm. A plot of E(λ (max)) versus [IE(donor)−EA(acceptor)] for the nine CT complexes studied is linear with a slope of 0.72±0.03 eV eV(−1). This plot is the first of its kind for CT complexes with structurally related donors and acceptors for which precise experimental gas‐phase IEs and EAs are known. It demonstrates that conclusions based on the common assumption that the slope of a CT E(λ (max)) versus [IE−EA] plot is unity may be incorrect in at least some cases and should be reconsidered. John Wiley and Sons Inc. 2019-10-07 2019-10-22 /pmc/articles/PMC6916568/ /pubmed/31381207 http://dx.doi.org/10.1002/chem.201902712 Text en ©2019 The Authors published by Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Full Papers
Castro, Karlee P.
Bukovsky, Eric V.
Kuvychko, Igor V.
DeWeerd, Nicholas J.
Chen, Yu‐Sheng
Deng, Shihu H. M.
Wang, Xue‐Bin
Popov, Alexey A.
Strauss, Steven H.
Boltalina, Olga V.
PAH/PAH(CF(3))(n) Donor/Acceptor Charge‐Transfer Complexes in Solution and in Solid‐State Co‐Crystals
title PAH/PAH(CF(3))(n) Donor/Acceptor Charge‐Transfer Complexes in Solution and in Solid‐State Co‐Crystals
title_full PAH/PAH(CF(3))(n) Donor/Acceptor Charge‐Transfer Complexes in Solution and in Solid‐State Co‐Crystals
title_fullStr PAH/PAH(CF(3))(n) Donor/Acceptor Charge‐Transfer Complexes in Solution and in Solid‐State Co‐Crystals
title_full_unstemmed PAH/PAH(CF(3))(n) Donor/Acceptor Charge‐Transfer Complexes in Solution and in Solid‐State Co‐Crystals
title_short PAH/PAH(CF(3))(n) Donor/Acceptor Charge‐Transfer Complexes in Solution and in Solid‐State Co‐Crystals
title_sort pah/pah(cf(3))(n) donor/acceptor charge‐transfer complexes in solution and in solid‐state co‐crystals
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6916568/
https://www.ncbi.nlm.nih.gov/pubmed/31381207
http://dx.doi.org/10.1002/chem.201902712
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