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pubmed-article:18767834pubmed:dateCreated2008-9-25lld:pubmed
pubmed-article:18767834pubmed:abstractTextFirefly emission is a well-known efficient bioluminescence. However, the mystery of the efficient thermal generation of electronic excited states in firefly still remains unsolved, particularly at the atomic and molecular levels. We performed SA-CASSCF(12,12)/6-31G* and CASPT2(12,12)/6-31G*//SA-CASSCF(12,12)/6-31G* calculations to elucidate the reaction mechanism of bioluminescence from the firefly dioxetanone in the gas phase. Adiabatic transition state (TS) for the O-O bond cleavage and the minimum energy conical intersection (MECI) were located and characterized. The unique topology of MECI featuring a seam of a sloped conical intersection for the firefly dioxetanone, which was uncovered for the first time, emerges along the reaction pathway to provide a widely extended channel to diabatically access the excited-state from the ground state.lld:pubmed
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pubmed-article:18767834pubmed:authorpubmed-author:KatoHiroakiHlld:pubmed
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pubmed-article:18767834pubmed:authorpubmed-author:HayashiShigeh...lld:pubmed
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pubmed-article:18767834pubmed:pagination12880-1lld:pubmed
pubmed-article:18767834pubmed:dateRevised2009-1-16lld:pubmed
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pubmed-article:18767834pubmed:year2008lld:pubmed
pubmed-article:18767834pubmed:articleTitleMechanism of efficient firefly bioluminescence via adiabatic transition state and seam of sloped conical intersection.lld:pubmed
pubmed-article:18767834pubmed:affiliationFukui Institute for Fundamental Chemistry, Kyoto University, Kyoto 606-8103, Japan.lld:pubmed
pubmed-article:18767834pubmed:publicationTypeJournal Articlelld:pubmed
pubmed-article:18767834pubmed:publicationTypeResearch Support, Non-U.S. Gov'tlld:pubmed