Artículo
Structures and reactivity of peroxy radicals and dimeric products revealed by online tandem mass spectrometry
Tomaz, Sophie; Wang, Dongyu; Zabalegui, Nicolás
; Li, Dandan; Lamkaddam, Houssni; Bachmeier, Franziska; Vogel, Alexander; Monge, Maria Eugenia
; Perrier, Sébastien; Baltensperger, Urs; George, Christian; Rissanen, Matti; Ehn, Mikael; El Haddad, Imad; Riva, Matthieu
Fecha de publicación:
01/2021
Editorial:
Springer
Revista:
Nature Communications
ISSN:
2041-1723
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
Organic peroxy radicals (RO2) play a pivotal role in the degradation of hydrocarbons. Theautoxidation of atmospheric RO2 radicals produces highly oxygenated organic molecules(HOMs), including low-volatility ROOR dimers formed by bimolecular RO2 + RO2 reactions.HOMs can initiate and greatly contribute to the formation and growth of atmospheric particles.As a result, HOMs have far-reaching health and climate implications. Nevertheless, thestructures and formation mechanism of RO2 radicals and HOMs remain elusive. Here, wepresent the in-situ characterization of RO2 and dimer structure in the gas-phase, using onlinetandem mass spectrometry analyses. In this study, we constrain the structures and formationpathway of several HOM-RO2 radicals and dimers produced from monoterpene ozonolysis, aprominent atmospheric oxidation process. In addition to providing insights into atmosphericHOM chemistry, this study debuts online tandem MS analyses as a unique approach for thechemical characterization of reactive compounds, e.g., organic radicals.
Palabras clave:
MASS SPECTROMETRY
,
HIGHLY OXYGENATED ORGANIC MOLECULES
,
AEROSOLS
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Colecciones
Articulos(CIBION)
Articulos de CENTRO DE INVESTIGACIONES EN BIONANOCIENCIAS "ELIZABETH JARES ERIJMAN"
Articulos de CENTRO DE INVESTIGACIONES EN BIONANOCIENCIAS "ELIZABETH JARES ERIJMAN"
Citación
Tomaz, Sophie; Wang, Dongyu; Zabalegui, Nicolás; Li, Dandan; Lamkaddam, Houssni; et al.; Structures and reactivity of peroxy radicals and dimeric products revealed by online tandem mass spectrometry; Springer; Nature Communications; 12; 1; 1-2021; 1-9
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