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Conformer-specific polar cycloaddition of dibromobutadiene with trapped propene ions.

Ardita KilajJia WangPatrik StraňákMax SchwilkUxía RiveroLei XuO Anatole von LilienfeldJochen KüpperStefan Willitsch
Published in: Nature communications (2021)
Diels-Alder cycloadditions are efficient routes for the synthesis of cyclic organic compounds. There has been a long-standing discussion whether these reactions proceed via stepwise or concerted mechanisms. Here, we adopt an experimental approach to explore the mechanism of the model polar cycloaddition of 2,3-dibromo-1,3-butadiene with propene ions by probing its conformational specificities in the entrance channel under single-collision conditions in the gas phase. Combining a conformationally controlled molecular beam with trapped ions, we find that both conformers of the diene, gauche and s-trans, are reactive with capture-limited reaction rates. Aided by quantum-chemical and quantum-capture calculations, this finding is rationalised by a simultaneous competition of concerted and stepwise reaction pathways, revealing an interesting mechanistic borderline case.
Keyphrases
  • molecular dynamics
  • molecular dynamics simulations
  • quantum dots
  • water soluble
  • monte carlo
  • single molecule
  • density functional theory
  • aqueous solution
  • ionic liquid
  • energy transfer