Gas-phase detection of oxirene

Author:

Wang Jia12ORCID,Marks Joshua H.12ORCID,Turner Andrew M.12ORCID,Mebel Alexander M.3ORCID,Eckhardt André K.4ORCID,Kaiser Ralf I.12ORCID

Affiliation:

1. W. M. Keck Research Laboratory in Astrochemistry, University of Hawaii at Manoa, Honolulu, HI 96822, USA.

2. Department of Chemistry, University of Hawaii at Manoa, Honolulu, HI 96822, USA.

3. Department of Chemistry and Biochemistry, Florida International University, Miami, FL 33199, USA.

4. Lehrstuhl für Organische Chemie II, Ruhr-Universität Bochum, Bochum 44801, Germany.

Abstract

Oxirenes—highly strained 4π Hückel antiaromatic organics—have been recognized as key reactive intermediates in the Wolff rearrangement and in interstellar environments. Predicting short lifetimes and tendency toward ring opening, oxirenes are one of the most mysterious classes of organic transients, with the isolation of oxirene ( c -C 2 H 2 O) having remained elusive. Here, we report on the preparation of oxirene in low-temperature methanol-acetaldehyde matrices upon energetic processing through isomerization of ketene (H 2 CCO) followed by resonant energy transfer of the internal energy of oxirene to the vibrational modes (hydroxyl stretching and bending, methyl deformation) of methanol. Oxirene was detected upon sublimation in the gas phase exploiting soft photoionization coupled with a reflectron time-of-flight mass spectrometry. These findings advance our fundamental understanding of the chemical bonding and stability of cyclic, strained molecules and afford a versatile strategy for the synthesis of highly ring-strained transients in extreme environments.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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