
pmid: 27105905
AbstractAs the prototype Curtius rearrangement reaction, carbamoyl azide decomposes into aminoisocyanate and molecular nitrogen. However, the key intermediate carbamoylnitrene was previously undetected, even though the decomposition of carbamoyl azides has been studied frequently since its discovery in the 1890s. Upon ArF laser (λ=193 nm) photolysis, the stepwise decomposition of the two simplest carbamoyl azides H2NC(O)N3 and Me2NC(O)N3, isolated in solid noble gas matrices, occurs with the formation of the corresponding carbamoylnitrenes H2NC(O)N and Me2NC(O)N. Both triplet species are characterized for the first time by combining matrix‐isolation IR spectroscopy and quantum‐chemical calculations. Subsequent visible‐light irradiations cause efficient rearrangement of these nitrenes into the respective aminoisocyanates.
Biochemistry & Molecular Biology, Multidisciplinary, Photolysis, Chemistry, Multidisciplinary, Direct observations, Curtius rearrangement, matrix isolation, 1600 Chemistry, azides, Nitrogen compounds, nitrenes, Chemistry, Rearrangement reactions, IR spectroscopy, Spacecraft instruments, Visible-light irradiation, [CHIM]Chemical Sciences, Quantum chemical calculations, Infrared spectroscopy, Quantum chemistry
Biochemistry & Molecular Biology, Multidisciplinary, Photolysis, Chemistry, Multidisciplinary, Direct observations, Curtius rearrangement, matrix isolation, 1600 Chemistry, azides, Nitrogen compounds, nitrenes, Chemistry, Rearrangement reactions, IR spectroscopy, Spacecraft instruments, Visible-light irradiation, [CHIM]Chemical Sciences, Quantum chemical calculations, Infrared spectroscopy, Quantum chemistry
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