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dc.contributor.authorYang, Meihongen_US
dc.contributor.authorHuo, Chunyanen_US
dc.contributor.authorLi, Anyangen_US
dc.contributor.authorLei, Yiboen_US
dc.contributor.authorYu, Leen_US
dc.contributor.authorZhu, Chaoyuanen_US
dc.date.accessioned2018-08-21T05:54:03Z-
dc.date.available2018-08-21T05:54:03Z-
dc.date.issued2017-05-21en_US
dc.identifier.issn1463-9076en_US
dc.identifier.urihttp://dx.doi.org/10.1039/c7cp00102aen_US
dc.identifier.urihttp://hdl.handle.net/11536/145530-
dc.description.abstractThe Zhu-Nakamura formulas based on on-the-fly trajectory surface hopping dynamics simulations at the two-state-averaged CASSCF level were employed to investigate the E -> Z photoisomerization mechanisms of hemithioindigo-hemistilbene (HTI) upon S-1 excitation. Seven conical intersections were observed along the isomerization pathways, which were composed of double bond torsion, benzene ring torsion, inversion and pyramidalization motions, and only three of them were found to play a role in the dynamics simulations started at S-1 E-HTI. The dominant isomerization pathway proceeds via central double bond torsion together with pyramidal and tilt motions to some extent (hop via CI5) and accounts for all the reactive trajectories. On the other hand, the two pathways that involve the conical zones lie in the vicinity of the E-form Franck-Condon region (CI7) and proceed along the combined central double bond and benzene ring torsion route (CI3/CI4) with generation of the E products. Within the 332 simulated trajectories, 66 hop to the ground state and only 19 switch to the Z product. The estimated quantum yield of 0.057 (19 in 332) agrees well with the reported experimental value of 0.053 +/- 0.016. The excited-state lifetimes span a wide region from hundreds of femtoseconds to several picoseconds, depending on the time for vibrational relaxation and number of cycles for periodical mixed mode torsion.en_US
dc.language.isoen_USen_US
dc.titleExcited-state E -> Z photoisomerization mechanism unveiled by ab initio nonadiabatic molecular dynamics simulation for hemithioindigo-hemistilbeneen_US
dc.typeArticleen_US
dc.identifier.doi10.1039/c7cp00102aen_US
dc.identifier.journalPHYSICAL CHEMISTRY CHEMICAL PHYSICSen_US
dc.citation.volume19en_US
dc.citation.spage12185en_US
dc.citation.epage12198en_US
dc.contributor.department應用化學系分子科學碩博班zh_TW
dc.contributor.departmentInstitute of Molecular scienceen_US
dc.identifier.wosnumberWOS:000401640600047en_US
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