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首页> 外文期刊>Journal of Analytical Methods in Chemistry >On the Primary Ionization Mechanism(s) in Matrix-Assisted Laser Desorption Ionization
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On the Primary Ionization Mechanism(s) in Matrix-Assisted Laser Desorption Ionization

机译:关于基质辅助激光解吸电离中的主要电离机理

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摘要

A mechanism is proposed for the first step of ionization occurring in matrix-assisted laser desorption ionization, leading to protonated and deprotonated matrix (Ma) molecules ([Ma + H]~+ and [Ma - H]~- ions). It is based on observation that in solid state, for carboxyl-containing MALDI matrices, the molecules form strong hydrogen bonds and their carboxylic groups can act as both donors and acceptors. This behavior leads to stable dimeric structures. The laser irradiation leads to the cleavage of these hydrogen bonds, and theoretical calculations show that both [Ma + H]~+ and [Ma - H]~- ions can be formed through a two-photon absorption process. Alternatively, by the absorption of one photon only, a heterodissociation of one of the O-H bonds can lead to a stable structure containing both cationic and anionic sites. This structure could be considered an intermediate that, through the absorption of a further photon, leads to the formation of matrix ions. Some experiments have been performed to evaluate the role of thermal ionization and indicate that its effect is negligible. Some differences have been observed for different matrices in the formation of analyte molecule (M) ion [M + H]~+, [M - H]~-,M~(+.),and [M - 2H]~(-.) and they have been explained in terms of ionization energies, pKa values, and thermodynamic stability.
机译:提出了在基质辅助激光解吸电离中发生电离的第一步的机制,该机制导致质子化和去质子化的基质(Ma)分子([Ma + H]〜+和[Ma-H]〜-离子)。基于观察,在固态下,对于含羧基的MALDI基质,分子形成强氢键,并且它们的羧基既可以充当供体又可以充当受体。此行为导致稳定的二聚体结构。激光辐照导致这些氢键断裂,理论计算表明,可以通过双光子吸收过程形成[Ma + H]〜+和[Ma-H]〜-离子。或者,通过仅吸收一个光子,O-H键之一的杂离解可产生包含阳离子和阴离子位点的稳定结构。这种结构可以被认为是一种中间产物,它通过吸收另一个光子而导致形成基质离子。已经进行了一些实验以评估热电离的作用,并表明其影响可忽略不计。对于分析物分子(M)离子[M + H]〜+,[M-H]〜-,M〜(+。)和[M-2H]〜(- ),并根据电离能,pKa值和热力学稳定性进行了解释。

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