Identificador persistente para citar o vincular este elemento: http://hdl.handle.net/10662/21107
Títulos: Mechanistic insights into the oxidative degradation of formic and oxalic acids with ozone and OH radical. A computational rationale
Autores/as: Beltrán Novillo, Fernando Juan
Chávez Águedo, Ana María
Cintas Moreno, Pedro
Martínez Vázquez, Rafael Fernando
Palabras clave: Gases;Hydrogen abstraction;Organic acids;Organic reactions;Water
Fecha de publicación: 2023
Editor/a: American Chemical Society
Resumen: Gas-phase and aqueous oxidations of formic and oxalic acids with ozone and OH radicals have been thoroughly examined by DFT methods. Such acids are not only important feedstocks for the iterative construction of other organic compounds but also final products generated by mineralization and advanced oxidation of higher organics. Our computational simulation unravels both common and distinctive reaction channels, albeit consistent with known H atom abstraction pathways and formation of hydropolyoxide derivatives. Notably, reactions with neutral ozone and OH radical proceed through lowenergy concerted mechanisms involving asynchronous transition structures. For formic acid, carbonylic H-abstraction appears to be more favorable than the dissociative abstraction of the acid proton. Formation of long oxygen chains does not cause a significant energy penalty and highly oxygenated products are stable enough, even if subsequent decomposition releases environmentally benign side substances like O2 and H2O.
Descripción: Published as part of The Journal of Physical Chemistry virtual special issue “Early-Career and Emerging Researchers in Physical Chemistry Volume 2”.
URI: http://hdl.handle.net/10662/21107
DOI: 10.1021/acs.jpca.2c08091
Colección:DFSCA - Artículos

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