2013
DOI: 10.1039/c3cp53690d
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Hydroxyl radical formation in the gas phase oxidation of distonic 2-methylphenyl radical cations

Abstract: The reactions of distonic 4-(N,N,N-trimethylammonium)-2-methylphenyl and 5-(N,N,Ntrimethylammonium)-2-methylphenyl radical cations (m/z 149) with O 2 are studied in the gas phase using ion-trap mass spectrometry. Photodissociation (PD) of halogenated precursors gives rise to the target distonic charge-tagged methylphenyl radical whereas collision-induced dissociation (CID) is found to produce unreactive radical ions. The PD generated distonic radicals, however, react rapidly with O2 to form [M + O2]•+ and [M +… Show more

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Cited by 16 publications
(27 citation statements)
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References 53 publications
(75 reference statements)
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“…26 These distonic ion oxidation experiments build on a framework provided by previous studies of distonic phenyl 27 and o-methylphenyl radical oxidation. 17 In combination, we show that OH elimination follows the reaction of o-hydroxyphenyl radicals with O 2 to form o-BQ. The stability of this nascent o-BQ is also investigated.…”
Section: Introductionmentioning
confidence: 66%
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“…26 These distonic ion oxidation experiments build on a framework provided by previous studies of distonic phenyl 27 and o-methylphenyl radical oxidation. 17 In combination, we show that OH elimination follows the reaction of o-hydroxyphenyl radicals with O 2 to form o-BQ. The stability of this nascent o-BQ is also investigated.…”
Section: Introductionmentioning
confidence: 66%
“…The detection of o-BQ (m/z 108) is rationalised by O 2 addition to the o-hydroxyphenyl radical, followed by isomerisation 16,17 and OH loss in the Waddington mechanism for b-hydroxyperoxyl radicals. 23,24 Scheme 1 also includes pathways from o-BQ that lead to CPO and the CPO radical cation that will now be discussed.…”
Section: Synchrotron Photoionisation Mass Spectrometrymentioning
confidence: 99%
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“…This distonic radical ion approach to studying peroxyl radical chemistry has recently proven useful in the investigation of peroxyl radical reactions relevant to combustion, biochemistry, and atmospheric science. [11][12][13][14][15][16] It allows for definitive assignment of the mass of reaction products while avoiding complicating peroxyl radical cross and self-reactions.…”
mentioning
confidence: 99%
“…38 Compared with CID, photodissociation of aryl iodides facilitates the production of radical sites without complications due to isomerisation. 39,40 Strategies that utilise UV radiation and a photolabile radical precursor show promise for peptide characterisation. High photoproduct yields, 41 the availability of tuneable laser sources, and avoiding the low-mass cut-off inherent in ion trap-based analysis 42 offer an opportunity for enhanced peptide sequencing coverage over collisional and electron-based tandem mass spectrometric methods.…”
Section: Introductionmentioning
confidence: 99%