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The molecular dynamics of the triplet-state Zimmerman di-π-methane rearrangement of dibenzobarrelene were computed with B3LYP and M06-2X density functionals. All productive quasiclassical trajectories involve sequential formation and cleavage of C-C bonds and an intermediate with lifetimes ranging from 13 to 1160 fs. Both dynamically concerted and stepwise trajectories are found. The average lifetime of this intermediate is significantly shorter than predicted by either transition-state theory or the Rice-Ramsperger-Kassel-Marcus model, thus indicating the non-statistical nature of the reaction mechanism.

作者:Gonzalo, Jiménez-Osés;Peng, Liu;Ricardo A, Matute;Kendall N, Houk

来源:Angewandte Chemie (International ed. in English) 2014 年 53卷 33期

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作者:
Gonzalo, Jiménez-Osés;Peng, Liu;Ricardo A, Matute;Kendall N, Houk
来源:
Angewandte Chemie (International ed. in English) 2014 年 53卷 33期
标签:
density functional calculations molecular dynamics photochemistry rearrangement statistical mechanics
The molecular dynamics of the triplet-state Zimmerman di-π-methane rearrangement of dibenzobarrelene were computed with B3LYP and M06-2X density functionals. All productive quasiclassical trajectories involve sequential formation and cleavage of C-C bonds and an intermediate with lifetimes ranging from 13 to 1160 fs. Both dynamically concerted and stepwise trajectories are found. The average lifetime of this intermediate is significantly shorter than predicted by either transition-state theory or the Rice-Ramsperger-Kassel-Marcus model, thus indicating the non-statistical nature of the reaction mechanism.