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首页> 外文期刊>Journal of mass spectrometry: JMS >Pneumatically assisted desorption/ionization: 1. Some thoughts on the possible ionization mechanism(s)
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Pneumatically assisted desorption/ionization: 1. Some thoughts on the possible ionization mechanism(s)

机译:气动辅助解吸/电离:1.对可能的电离机理的一些思考

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We have observed that spraying solvent droplets on a zopiclone tablet produced MH+ ions also in the absence of any electrical field and without the addition of organic acids to the sprayed solvent. The choice of a drug tablet as test bench has been done for the signal stability, higher than that observed when the drug is directly placed on a stainless steel surface. This behavior indicates that the formation of MH+ ions is mainly due to pneumatical effects and the results are discussed with respect to those obtained by other research groups. Different mechanisms contributing to MH+ production under these conditions are proposed and discussed. The local heating of the solvent thin layer present on the surface has been calculated and the small temperature increase (and the consequent small decrease of pK(a) value) suggests that this effect can play only a minor role. However, different solvents have been employed for studying this aspect and, quite surprisingly, the best results have been obtained with acetonitrile (ACN). Experiments performed by spraying CD3CN showed again the formation of MH+ and not MD, and this excludes the role of ACN as protonating medium. A further thought was stimulated by the behavior observed by varying the sheath gas (N-2) flow, showing that the MH+ ion intensity increases by increasing the flow. Side effects related to the highest kinetic energy of the spraying droplets can be considered, but an active role of N-2 in the MH+ formation could be taken into account, by considering the possible ionization of N-2 by collisional phenomena. The N-2(+center dot) ions could undergo a charge-exchange reaction with analyte molecules leading to a short-lived odd electron ion which behaves as protonating media for neutral molecules. The above-described mechanism does not require either the presence of electrical fields nor the addition of organic acid to the sprayer solvent and can give a rationale for what was observed when only pneumatical conditions are employed.
机译:我们已经观察到,在没有任何电场且没有向喷雾溶剂中添加有机酸的情况下,在佐匹克隆片剂上喷雾溶剂液滴也会产生MH +离子。已经选择了药物片剂作为测试台,以确保信号稳定性,高于药物直接置于不锈钢表面时观察到的信号稳定性。此行为表明MH +离子的形成主要归因于气动作用,并且针对其他研究小组获得的结果进行了讨论。提出并讨论了在这些条件下促成MH +生产的不同机制。已经计算出表面上存在的溶剂薄层的局部加热,并且温度的小幅上升(以及随之而来的pK(a)值的小幅下降)表明,这种作用仅能发挥很小的作用。但是,已经采用了不同的溶剂来研究该方面,并且非常令人惊讶的是,使用乙腈(ACN)获得了最佳结果。通过喷洒CD3CN进行的实验再次显示了MH +而不是MD的形成,这排除了ACN作为质子化介质的作用。通过改变鞘气(N-2)流量观察到的行为激发了进一步的思考,表明MH +离子强度随着流量的增加而增加。可以考虑与喷雾液滴的最高动能相关的副作用,但是可以考虑到N-2在碰撞现象中可能使N-2电离,从而考虑到N-2在MH +形成中的积极作用。 N-2(+中心点)离子可能会与分析物分子发生电荷交换反应,导致寿命短的奇数电子离子充当中性分子的质子化介质。上述机理既不需要电场也不需要向喷雾器溶剂中添加有机酸,并且可以为仅采用气动条件时所观察到的原理提供理论依据。

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