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dc.contributor.authorKarak, Pijushen_GB
dc.contributor.authorRuud, Kennethen_GB
dc.contributor.authorChakrabarti, Swapanen_GB
dc.date.accessioned2022-12-19T09:26:27Z
dc.date.accessioned2022-12-21T08:03:54Z
dc.date.available2022-12-19T09:26:27Z
dc.date.available2022-12-21T08:03:54Z
dc.date.issued2022-11-01
dc.identifier.citationKarak, Ruud, Chakrabarti. Spin-vibronic interaction induced reverse intersystem crossing: A case study with TXO-TPA and TXO-PhCz molecules. Journal of Chemical Physics. 2022;157(17)en_GB
dc.identifier.urihttp://hdl.handle.net/20.500.12242/3120
dc.descriptionKarak, Pijush; Ruud, Kenneth; Chakrabarti, Swapan. Spin-vibronic interaction induced reverse intersystem crossing: A case study with TXO-TPA and TXO-PhCz molecules. Journal of Chemical Physics 2022 ;Volum 157.(17)en_GB
dc.description.abstractWe highlight the important roles the direct spin–orbit (DSO) coupling, the spin-vibronic (SV) coupling, and the dielectric constant of the medium play on the reverse intersystem crossing (RISC) mechanism of TXO-TPA and TXO-PhCz molecules. To understand this complex phenomenon, we have calculated the RISC rate constant, kRISC, using a time-dependent correlation function-based method within the framework of second-order perturbation theory. Our computed kRISC in two different solvents, toluene and chloroform, suggests that in addition to the DSO, a dielectric medium-dependent SV mechanism may also have a significant impact on the net enhancement of the rate of RISC from the lowest triplet state to the first excited singlet state. Whereas we have found that kRISC of TXO-TPA is mostly determined by the DSO contribution independent of the choice of the solvent, the SV mechanism contributes more than 30% to the overall kRISC of TXO-PhCz in chloroform. In toluene, however, the SV mechanism is less important for the RISC process of TXO-PhCz. An analysis of mode-specific nonadiabatic coupling (NAC) between T2 and T1 of TXO-PhCz and TXO-TPA suggests that the NAC values in certain normal modes of TXO-PhCz are much higher than those of TXO-TPA, and it is more pronounced with chloroform as a solvent. The findings demonstrate the role of the solvent-assisted SV mechanism toward the net RISC rate constant, which in turn maximizes the efficiency of thermally activated delayed fluorescence.en_GB
dc.language.isoenen_GB
dc.subjectFluorescensen_GB
dc.subjectFotokjemien_GB
dc.subjectKvantekjemien_GB
dc.titleSpin-vibronic interaction induced reverse intersystem crossing: A case study with TXO-TPA and TXO-PhCz moleculesen_GB
dc.date.updated2022-12-19T09:26:27Z
dc.identifier.cristinID2069618
dc.identifier.doi10.1063/5.0120068
dc.relation.projectIDNorges forskningsråd: 262695
dc.source.issn0021-9606
dc.source.issn1089-7690
dc.type.documentJournal article
dc.relation.journalJournal of Chemical Physics


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