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Publikace:
Understanding of Intramolecular Charge Transfer Dynamics of a Push-Pull Dimethylamino-phenylethynylphenyl-dicyanoimidazole by Steady-State and Ultrafast Spectroscopic Studies

ČlánekOmezený přístuppeer-reviewedpublished
dc.contributor.authorMandal, Haraprasad
dc.contributor.authorRao, J. Laxmikanth
dc.contributor.authorKulhánek, Jiří
dc.contributor.authorBureš, Filip
dc.contributor.authorBangal, Prakriti Ranjan
dc.date.accessioned2024-08-24T07:10:41Z
dc.date.available2024-08-24T07:10:41Z
dc.date.issued2023
dc.description.abstractPhotophysical behaviors of D-pi-A compound 2-{4-[4-(N,N-dimethylamino)phenylethynyl]phenyl-1-methyl-1H-imidazole-4,5-dicarbonitrile (DMAP-PIDCN) were explored using steady-state absorption, fluorescence emission, and femtosecond time-resolved absorption and emission spectroscopic techniques at room temperature along with computational time-dependent density functional theory (TD-DFT) calculation. The spectroscopic studies were carried out in different solvents of varying polarities including binary solvent mixtures. The role of the solvent polarity, viscosity, and temperature on the relaxation mechanism of DMAPPIDCN is disclosed. The observed steady-state and time-resolved spectroscopic features were attributed to intramolecular charge transfer (ICT) dynamics. The ICT in DMAPPIDCN is rationalized to a sequential twisted motion of both N(CH3)2 and whole N,N-dimethylaminophenyl moieties around the molecular axis interconnecting the adjacent imidazolephenyl moiety leading to the TICT1 and TICT2 (sigma*) states. The increased solvent polarity affected mostly the fluorescence emission spectra pointing to a significant increase in the excited state dipole moment. This result clearly reveals formation of the TICT2 (sigma*) involving efficient charge transfer from the (N,N-dimethylamino)phenyl (DMAP) donor to the phenyl-1-methyl-1H-imidazole-dicarbonitrile (PIDCN) acceptor in the excited state in a polar environment. In the TICT2 (sigma*) state, the planes of electron-withdrawing and electron-donating moieties are perpendicular with the angle (DMAP)C-CtriplebondC being 141.1°. This nonplanar arrangement accounts for the observed large Stokes shift. Time-resolved fluorescence spectroscopic studies unveil the excited state relaxation processes confirming the increase in the nonradiative decay rate in aprotic medium with increase in the solvent dielectric constants. Femtosecond transient spectroscopic studies unambiguously confirmed the existence of well separated LE and TICT states and their ensuing kinetics in polar medium. In nonpolar solvents, DMAPPIDCN shows strong fluorescence which emits from the LE (pipi*) state, whereas in polar solvents, formation of two consecutive TICT states occurs from the LE (pipi*) in a sub picosecond to few picosecond time domain depending on polarity of the solvents and the non-radiative decay from the TICT states.eng
dc.description.abstract-translatedFotofyzikální chování D-pi-A sloučeniny 2-{4-[4-(N,N-dimethylamino)fenylethynyl]fenyl-1-methyl-1H-imidazol-4,5-dikarbonitrilu (DMAP-PIDCN) bylo zkoumáno pomocí absorpce, fluorescenční emise a femtosekundové časově rozlišené absorpční a emisní spektroskopické techniky při pokojové teplotě spolu s TD-DFT kalkulací. Spektroskopické studie byly provedeny v různých rozpouštědlech s různou polaritou včetně binárních směsí rozpouštědel. Je popsána role polarity rozpouštědla, viskozity a teploty na relaxačním mechanismu DMAPPIDCN. Pozorované spektroskopické rysy byly připisovány dynamice přenosu intramolekulárního náboje (ICT). Zvýšená polarita rozpouštědla ovlivnila především fluorescenční emisní spektra ukazující na významný nárůst dipólového momentu excitovaného stavu. Tento výsledek jasně odhaluje účinný přenos náboje z donoru (N,N-dimethylamino)fenylu (DMAP) na akceptor fenyl-1-methyl-1H-imidazol-dikarbonitril (PIDCN) v excitovaném stavu v polárním prostředí.cze
dc.formatp. 4724-4740eng
dc.identifier.doi10.1021/acs.jpcc.2c08320
dc.identifier.issn1932-7447
dc.identifier.obd39888850
dc.identifier.scopus2-s2.0-85148909090
dc.identifier.urihttps://hdl.handle.net/10195/83619
dc.identifier.wos000963058600001
dc.language.isoeng
dc.peerreviewedyeseng
dc.publicationstatuspublishedeng
dc.publisherAmerican Chemical Societyeng
dc.relation.ispartofJournal of Physical Chemistry C, volume 127, issue: 9eng
dc.relation.publisherversionhttps://pubs.acs.org/doi/10.1021/acs.jpcc.2c08320
dc.rightspouze v rámci univerzitycze
dc.subjectfluorescence up-conversioneng
dc.subjectelectron-transfereng
dc.subjectexcited-stateeng
dc.subjectdual fluorescenceeng
dc.subjecthydrogen-bondeng
dc.subjectchromophoreseng
dc.subjectabsorptioneng
dc.subjectdyeseng
dc.subjectrelaxationeng
dc.subjectemissioneng
dc.subjectpřenos elektronůcze
dc.subjectexcitovaný stavcze
dc.subjectduální fluorescencecze
dc.subjectvodíková vazbacze
dc.subjectchromoforycze
dc.subjectabsorpcecze
dc.subjectbarvivacze
dc.subjectrelaxacecze
dc.subjectemisecze
dc.titleUnderstanding of Intramolecular Charge Transfer Dynamics of a Push-Pull Dimethylamino-phenylethynylphenyl-dicyanoimidazole by Steady-State and Ultrafast Spectroscopic Studieseng
dc.title.alternativePochopení dynamiky přenosu intramolekulárního náboje v push-pull dimethylamino-fenylethynylfenyl-dikyanoimidazolu pomocí spektroskopických studiícze
dc.typeArticleeng
dspace.entity.typePublication

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