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电喷雾电离生成萘醌自由基阴离子:溶液、气相和计算化学研究。

Generation of naphthoquinone radical anions by electrospray ionization: solution, gas-phase, and computational chemistry studies.

机构信息

Departamento de Química, Faculdade de Filosofia Ciências e Letras, Universidade de São Paulo, Ribeirão Preto, SP 14040-901, Brasil.

出版信息

J Phys Chem A. 2011 Jun 2;115(21):5453-60. doi: 10.1021/jp202322n. Epub 2011 May 11.

Abstract

Radical anions are present in several chemical processes, and understanding the reactivity of these species may be described by their thermodynamic properties. Over the last years, the formation of radical ions in the gas phase has been an important issue concerning electrospray ionization mass spectrometry studies. In this work, we report on the generation of radical anions of quinonoid compounds (Q) by electrospray ionization mass spectrometry. The balance between radical anion formation and the deprotonated molecule is also analyzed by influence of the experimental parameters (gas-phase acidity, electron affinity, and reduction potential) and solvent system employed. The gas-phase parameters for formation of radical species and deprotonated species were achieved on the basis of computational thermochemistry. The solution effects on the formation of radical anion (Q(•-)) and dianion (Q(2-)) were evaluated on the basis of cyclic voltammetry analysis and the reduction potentials compared with calculated electron affinities. The occurrence of unexpected ions Q+15 was described as being a reaction between the solvent system and the radical anion, Q(•-). The gas-phase chemistry of the electrosprayed radical anions was obtained by collisional-induced dissociation and compared to the relative energy calculations. These results are important for understanding the formation and reactivity of radical anions and to establish their correlation with the reducing properties by electrospray ionization analyses.

摘要

自由基阴离子存在于许多化学过程中,这些物种的反应性可以通过它们的热力学性质来描述。在过去的几年中,气相中自由基离子的形成一直是电喷雾电离质谱研究中一个重要的问题。在这项工作中,我们报告了通过电喷雾电离质谱产生醌类化合物(Q)的自由基阴离子。通过实验参数(气相酸度、电子亲合势和还原电位)和所采用的溶剂体系的影响,也分析了自由基阴离子形成与去质子化分子之间的平衡。基于计算热化学,获得了形成自由基物种和去质子化物种的气相参数。基于循环伏安分析评估了溶剂体系对形成自由基阴离子(Q(•-))和二阴离子(Q(2-))的影响,并将还原电位与计算的电子亲合势进行了比较。出乎意料的离子Q+15的出现被描述为溶剂体系与自由基阴离子 Q(•-)之间的反应。通过碰撞诱导解离获得了电喷雾产生的自由基阴离子的气相化学,并将其与相对能量计算进行了比较。这些结果对于理解自由基阴离子的形成和反应性以及通过电喷雾电离分析建立它们与还原性质的相关性非常重要。

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