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首页> 外文期刊>Journal of mass spectrometry: JMS >Electrophilic aromatic substitution and single-electron transfer (SET) by the phenylium ion in the gas phase: characterization of a long-lived SET intermediate
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Electrophilic aromatic substitution and single-electron transfer (SET) by the phenylium ion in the gas phase: characterization of a long-lived SET intermediate

机译:气相中苯基离子的亲电子芳族取代和单电子转移(SET):长寿命SET中间体的表征

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摘要

Gas-phase mass spectrometric studies and calculations were performed for the reaction of naked phenylium ion with several benzene halides. From these reactions, the molecular ion for biphenyl as the predominant product was obtained only from the reaction of phenylium ions with iodobenzene and bromobenzene. Furthermore, through the collision-induced dissociation (CID) of the ion at m/z 281, the only dissociation observed is the loss of a phenyl radical, which indicates that a single-electron transfer (SET) mechanism might have occurred within the reaction. Additionally, according to the comparison between the CID experiments of those isomeric compounds of the a-complexes and the CID experiment of the ion at m/z 281 captured in the ion trap, we have also defined the captured ion at m/z 281 as an SET-intimate ion pair rather than those of a-complexes or the diphenyliodonium.
机译:进行了气相质谱研究和计算,以分析裸露的苯基离子与几种卤化苯的反应。从这些反应中,仅由苯基离子与碘苯和溴苯的反应获得联苯作为主要产物的分子离子。此外,通过离子在m / z 281处的碰撞诱导解离(CID),观察到的唯一解离是苯基自由基的损失,这表明反应中可能已经发生了单电子转移(SET)机制。此外,根据α-配合物的那些异构化合物的CID实验与离子阱中捕获的m / z 281处离子的CID实验之间的比较,我们还将m / z 281处的捕获离子定义为SET紧密离子对,而不是a-络合物或二苯基碘鎓离子对。

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