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Excitation/detection energy controlled anisotropy dynamics in asymmetrically cyano substituted tri-podal molecules

Článekopen accesspeer-reviewedpublished version
dc.contributor.authorSeintis, Kcze
dc.contributor.authorKalis, I-Kcze
dc.contributor.authorKlikar, Milancze
dc.contributor.authorBureš, Filipcze
dc.contributor.authorFakis, Mcze
dc.date.accessioned2021-05-15T18:22:29Z
dc.date.available2021-05-15T18:22:29Z
dc.date.issued2020eng
dc.description.abstractIn the present work, the photophysical properties of two series of asymmetrical tri-podal molecules are studied, in order to determine the dependence of energy localization/delocalization phenomena on excitation and detection wavelength, by means of steady state, femtosecond time-resolved fluorescence and anisotropy spectroscopy. The molecules bear triphenylamine as an electron donating core and an acetylenic or olefinic pi-conjugated bridge. At the periphery, they are substituted by no, one, two or three -CN groups used as electron acceptors. Thus, the compounds with only one or two -CN groups are asymmetrically substituted. As a comparison, the photophysics of their dipolar and quadrupolar analogues is also presented. The steady state absorption spectra of the asymmetrical tri-podal compounds exhibit a broadening and a low energy shoulder due to the splitting of the excited states. The fluorescence spectra are more red-shifted in the tri-podal molecules with a single -CN group, providing the first evidence of its mostly dipolar nature. Time-resolved anisotropy measurements by using different excitation and detection wavelengths provide clear evidence that the asymmetrical tri-podal molecules with one or two -CN groups behave like octupolar molecules upon high-energy excitation (the initial anisotropy is found 0.1-0.15), while upon low-energy excitation they reveal a behavior expected for linear dipolar or V-shaped quadrupolar molecules (the initial anisotropy is very close to 0.4 and 0.17, respectively). The symmetrical tri-podal compounds with no or three cyano groups, exhibit an anisotropy depolarization time of 2.5 ps attributed to energy hopping. The amplitude of this energy hopping component is wavelength dependent and increases as the excitation is shifted towards the long wavelength edge.eng
dc.description.abstract-translatedV této práci jsou studovány fotofyzikální vlastnosti dvou sérií asymetrických tripodálních molekul za účelem stanovení závislosti lokalizační/delokalizační energie na excitační a detekční vlnové délce pomocí fluorescenčních technik a femtosekundové anizotropní spektroskopie.cze
dc.formatp. 16681-16690eng
dc.identifier.doi10.1039/d0cp01726deng
dc.identifier.issn1463-9076eng
dc.identifier.obd39884862eng
dc.identifier.scopus2-s2.0-85088881717
dc.identifier.urihttps://hdl.handle.net/10195/77094
dc.identifier.wos000556485900017eng
dc.language.isoengeng
dc.peerreviewedyeseng
dc.publicationstatuspublished versioneng
dc.publisherRoyal Society of Chemistryeng
dc.relation.ispartofPhysical Chemistry Chemical Physics, volume 22, issue: 29eng
dc.relation.publisherversionhttps://doi.org/10.1039/D0CP01726Deng
dc.rightsopen access (CC BY-NC 3.0)eng
dc.rights.urihttps://creativecommons.org/licenses/by-nc/3.0/
dc.subjectintramolecular charge-transfereng
dc.subjectphotophysical propertieseng
dc.subjectquadrupolar chromophoreseng
dc.subjectabsorption propertieseng
dc.subject2-photon absorptioneng
dc.subjectintramolekulární přenos nábojecze
dc.subjectfotofyzikální vlastnosticze
dc.subjectkvadrupolární chromoforycze
dc.subjectabsorpční vlastnosticze
dc.subjectdvoufotonová absorpcecze
dc.titleExcitation/detection energy controlled anisotropy dynamics in asymmetrically cyano substituted tri-podal moleculeseng
dc.title.alternativeExcitační/detekční energií kontrolovaná anizotropní dynamika u kyan-substituovaných tripodálních molekul.cze
dc.typeArticleeng
dspace.entity.typePublication

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