4.7 Article

Photoinduced reactions of both 2-formyl-2H-azirine and isoxazole: A theoretical study based on electronic structure calculations and nonadiabatic dynamics simulations

Journal

JOURNAL OF CHEMICAL PHYSICS
Volume 142, Issue 24, Pages -

Publisher

AMER INST PHYSICS
DOI: 10.1063/1.4922742

Keywords

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Funding

  1. NSFC [21033002]
  2. Major State Basic Research Development Programs [2011CB808503]
  3. Natural Science Foundation of Guizhou Normal College [14BS024]

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In the present work, the combined electronic structure calculations and dynamics simulations have been performed to explore photocleavages of 2-formyl-2H-azirine and isoxazole in the gas phase and the subsequent rearrangement reactions. The carbonyl n -> pi* transition induces a cleavage of the C-N single bond of 2-formyl-2H-azirine to yield beta-formylvinylnitrene in open-shell singlet state. However, the n -> pi* excitation of the imine chromophore results in a cleavage of the C-C single bond, producing a nitrile ylide intermediate through an internal conversion to the ground state. beta-formylvinylnitrene and nitrile ylide with the carbonyl group are easily transformed into 2-formyl-2H-azirine and oxazole, respectively. The N-O bond cleavages on both S1((1)pi pi*) and S-2((1)n(N)pi*) of isoxazole are ultrafast processes, and they give products of 2-formyl-2H-azirine, 3-formylketenimine, HCN + CHCHO, and HCO + CHCHN. Both 2H-azirines and ketenimines were suggested to be formed from the triplet vinylnitrenes by intersystem crossing in the previous studies. However, our calculations show that the singlet beta-formylvinylnitrene is responsible for the formation of 2-formyl-2H-azirine and 3-formylketenimine, and the singlet vinylnitrenes can play a key role in the photoinduced reactions of both 2H-azirines and isoxazoles. (C) 2015 AIP Publishing LLC.

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