2022Chemical CommunicationsOpen access

Experimental evidence for the elusive ketohydroperoxide pathway and the formation of glyoxal in ethylene ozonolysis

Caroline Smith Lewin, Olivier Herbinet, Gustavo A. García, Philippe Arnoux, Luc–Sy Tran, Guillaume Vanhove, Laurent Nahon, Frédérique Battin‐Leclerc, Jérémy Bourgalais

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Abstract

) still lacks consensus. In this work, experimental evidence of an elusive diradical pathway is provided through the detection of the 2-hydroperoxyacetaldehyde ketohydroperoxide and its decomposition product, glyoxal.

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) still lacks consensus. In this work, experimental evidence of an elusive diradical pathway is provided through the detection of the 2-hydroperoxyacetaldehyde ketohydroperoxide and its decomposition product, glyoxal.

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Available abstract

) still lacks consensus. In this work, experimental evidence of an elusive diradical pathway is provided through the detection of the 2-hydroperoxyacetaldehyde ketohydroperoxide and its decomposition product, glyoxal.

Key concepts: Ozonolysis, Glyoxal, Ethylene, Diradical, Alkene, Chemistry, Decomposition, Photochemistry

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Experimental evidence for the elusive ketohydroperoxide pathway and the formation of glyoxal in ethylene ozonolysis — Research Paper | ScholarLens