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Elucidating the photodissociation fingerprint and quantifying the determination of organic hydroperoxides in gas-phase autoxidation

Hydroperoxides are formed in the atmospheric oxidation of volatile organic compounds, in the combustion autoxidation of fuel, in the cold environment of the interstellar medium, and also in some catalytic reactions. They play crucial roles in the formation and aging of secondary organic aerosols and...

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Autores principales: Hu, Zhihong, Di, Qimei, Liu, Bingzhi, Li, Yanbo, He, Yunrui, Zhu, Qingbo, Xu, Qiang, Dagaut, Philippe, Hansen, Nils, Sarathy, S. Mani, Xing, Lili, Truhlar, Donald G., Wang, Zhandong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10013783/
https://www.ncbi.nlm.nih.gov/pubmed/36848575
http://dx.doi.org/10.1073/pnas.2220131120
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author Hu, Zhihong
Di, Qimei
Liu, Bingzhi
Li, Yanbo
He, Yunrui
Zhu, Qingbo
Xu, Qiang
Dagaut, Philippe
Hansen, Nils
Sarathy, S. Mani
Xing, Lili
Truhlar, Donald G.
Wang, Zhandong
author_facet Hu, Zhihong
Di, Qimei
Liu, Bingzhi
Li, Yanbo
He, Yunrui
Zhu, Qingbo
Xu, Qiang
Dagaut, Philippe
Hansen, Nils
Sarathy, S. Mani
Xing, Lili
Truhlar, Donald G.
Wang, Zhandong
author_sort Hu, Zhihong
collection PubMed
description Hydroperoxides are formed in the atmospheric oxidation of volatile organic compounds, in the combustion autoxidation of fuel, in the cold environment of the interstellar medium, and also in some catalytic reactions. They play crucial roles in the formation and aging of secondary organic aerosols and in fuel autoignition. However, the concentration of organic hydroperoxides is seldom measured, and typical estimates have large uncertainties. In this work, we developed a mild and environmental-friendly method for the synthesis of alkyl hydroperoxides (ROOH) with various structures, and we systematically measured the absolute photoionization cross-sections (PICSs) of the ROOHs using synchrotron vacuum ultraviolet-photoionization mass spectrometry (SVUV-PIMS). A chemical titration method was combined with an SVUV-PIMS measurement to obtain the PICS of 4-hydroperoxy-2-pentanone, a typical molecule for combustion and atmospheric autoxidation ketohydroperoxides (KHPs). We found that organic hydroperoxide cations are largely dissociated by loss of OOH. This fingerprint was used for the identification and accurate quantification of the organic peroxides, and it can therefore be used to improve models for autoxidation chemistry. The synthesis method and photoionization dataset for organic hydroperoxides are useful for studying the chemistry of hydroperoxides and the reaction kinetics of the hydroperoxy radicals and for developing and evaluating kinetic models for the atmospheric autoxidation and combustion autoxidation of the organic compounds.
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spelling pubmed-100137832023-08-27 Elucidating the photodissociation fingerprint and quantifying the determination of organic hydroperoxides in gas-phase autoxidation Hu, Zhihong Di, Qimei Liu, Bingzhi Li, Yanbo He, Yunrui Zhu, Qingbo Xu, Qiang Dagaut, Philippe Hansen, Nils Sarathy, S. Mani Xing, Lili Truhlar, Donald G. Wang, Zhandong Proc Natl Acad Sci U S A Physical Sciences Hydroperoxides are formed in the atmospheric oxidation of volatile organic compounds, in the combustion autoxidation of fuel, in the cold environment of the interstellar medium, and also in some catalytic reactions. They play crucial roles in the formation and aging of secondary organic aerosols and in fuel autoignition. However, the concentration of organic hydroperoxides is seldom measured, and typical estimates have large uncertainties. In this work, we developed a mild and environmental-friendly method for the synthesis of alkyl hydroperoxides (ROOH) with various structures, and we systematically measured the absolute photoionization cross-sections (PICSs) of the ROOHs using synchrotron vacuum ultraviolet-photoionization mass spectrometry (SVUV-PIMS). A chemical titration method was combined with an SVUV-PIMS measurement to obtain the PICS of 4-hydroperoxy-2-pentanone, a typical molecule for combustion and atmospheric autoxidation ketohydroperoxides (KHPs). We found that organic hydroperoxide cations are largely dissociated by loss of OOH. This fingerprint was used for the identification and accurate quantification of the organic peroxides, and it can therefore be used to improve models for autoxidation chemistry. The synthesis method and photoionization dataset for organic hydroperoxides are useful for studying the chemistry of hydroperoxides and the reaction kinetics of the hydroperoxy radicals and for developing and evaluating kinetic models for the atmospheric autoxidation and combustion autoxidation of the organic compounds. National Academy of Sciences 2023-02-27 2023-03-07 /pmc/articles/PMC10013783/ /pubmed/36848575 http://dx.doi.org/10.1073/pnas.2220131120 Text en Copyright © 2023 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/This article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Physical Sciences
Hu, Zhihong
Di, Qimei
Liu, Bingzhi
Li, Yanbo
He, Yunrui
Zhu, Qingbo
Xu, Qiang
Dagaut, Philippe
Hansen, Nils
Sarathy, S. Mani
Xing, Lili
Truhlar, Donald G.
Wang, Zhandong
Elucidating the photodissociation fingerprint and quantifying the determination of organic hydroperoxides in gas-phase autoxidation
title Elucidating the photodissociation fingerprint and quantifying the determination of organic hydroperoxides in gas-phase autoxidation
title_full Elucidating the photodissociation fingerprint and quantifying the determination of organic hydroperoxides in gas-phase autoxidation
title_fullStr Elucidating the photodissociation fingerprint and quantifying the determination of organic hydroperoxides in gas-phase autoxidation
title_full_unstemmed Elucidating the photodissociation fingerprint and quantifying the determination of organic hydroperoxides in gas-phase autoxidation
title_short Elucidating the photodissociation fingerprint and quantifying the determination of organic hydroperoxides in gas-phase autoxidation
title_sort elucidating the photodissociation fingerprint and quantifying the determination of organic hydroperoxides in gas-phase autoxidation
topic Physical Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10013783/
https://www.ncbi.nlm.nih.gov/pubmed/36848575
http://dx.doi.org/10.1073/pnas.2220131120
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