Photophysical and Protonation Time Resolved Studies of Donor-Acceptor Branched Systems With Pyridine Acceptors

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dc.contributor.author Kournoutas, Fotis cze
dc.contributor.author Seintis, Kostas cze
dc.contributor.author Karakostas, Nikolaos cze
dc.contributor.author Tydlitát, Jiří cze
dc.contributor.author Achelle, Sylvain cze
dc.contributor.author Pistolis, George cze
dc.contributor.author Bureš, Filip cze
dc.contributor.author Fakis, Mihalis cze
dc.date.accessioned 2020-03-19T12:52:49Z
dc.date.available 2020-03-19T12:52:49Z
dc.date.issued 2019 eng
dc.identifier.issn 1089-5639 eng
dc.identifier.uri https://hdl.handle.net/10195/74924
dc.description.abstract A comparative study of the photophysical properties of octupolar pyridyl-terminated triphenylamine molecule, with its quadrupolar and dipolar analogues, by means of ambient and low temperature steady state spectroscopy and femtosecond to nanosecond time-resolved fluorescence spectroscopy is reported. The push-pull molecules bear triphenylamine electron donating core, pyridine peripheral electron acceptors, and acetylene pi-bridge. The samples were studied in solvents of varying polarity and also upon addition of small amounts of acetic acid to induce protonation of the pyridine group. All samples exhibit significant positive fluorescence solvatochromism as well as a relaxation of their excited state to a solvent relaxed intramolecular charge transfer state on the picosecond time scale. For the octupolar compound, excited state relaxation occurs simultaneously with excitation energy hopping among the branches. The hopping time is solvent polarity controlled since it becomes slower as the polarity increases. The experimental hopping times are compared to those predicted by Forster and Fermi formulations. The samples are capable of emitting broadband light covering almost the whole visible spectrum by careful control of protonation. Energy transfer from the neutral toward the protonated species on the 1 ps time scale is revealed. eng
dc.format p. 417–428 eng
dc.language.iso eng eng
dc.publisher American Chemical Society eng
dc.relation.ispartof Journal of Physical Chemistry A, volume 123, issue: 2 eng
dc.rights pouze v rámci univerzity cze
dc.subject excitation-energy transfer eng
dc.subject excited-state dynamics eng
dc.subject intramolecular charge-transfer eng
dc.subject nonlinear-optical properties eng
dc.subject white-light emission eng
dc.subject 2-photon absorption eng
dc.subject triphenylamine derivatives eng
dc.subject fluorescence eng
dc.subject chromophores eng
dc.subject dipolar eng
dc.subject pyridin cze
dc.subject trifenylamin cze
dc.subject time-resolved fluerescence cze
dc.title Photophysical and Protonation Time Resolved Studies of Donor-Acceptor Branched Systems With Pyridine Acceptors eng
dc.title.alternative Fotofyzikální a protonační time-resolved studie donor-akceptorového rozvětveného systému s pyridinovými akceptory cze
dc.type article eng
dc.description.abstract-translated Porovnávací studie fotofyzikálních vlastností oktupolárních pyridin-trifenylaminů s jejich kvadrupolárními a dipodálními analogy pomocí steady-state spektroskopie a femtosekundové až nanosekundové time-resolved fluorescenční spektroskopie při běžné a nízké teplotě. Látky byly studovány v rozpouštědlech s různou polaritou, byl studován také vliv přídavků kyseliny octové vedoucí k protonaci pyridinových skupin. Díky kontrolované protonaci vzorky vykazovaly širokopásovou emisi pokrývající téměř celé viditelné spektrum. cze
dc.peerreviewed yes eng
dc.publicationstatus published version eng
dc.identifier.doi 10.1021/acs.jpca.8b08628 eng
dc.relation.publisherversion https://pubs.acs.org/doi/pdf/10.1021/acs.jpca.8b08628 eng
dc.identifier.wos 000456350900003 eng
dc.identifier.scopus 2-s2.0-85059768765
dc.identifier.obd 39883105 eng


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