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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Cluster phase chemistry: Collisions of vibrationally excited cationic dicarboxylic acid clusters with water molecules initiate dissociation of cluster components
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Cluster phase chemistry: Collisions of vibrationally excited cationic dicarboxylic acid clusters with water molecules initiate dissociation of cluster components

机译:团簇相化学:振动激发的阳离子二羧酸团簇与水分子的碰撞引发团簇组分的解离

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摘要

A homologous series of cationic gas-phase clusters of dicarboxylic acids (oxalic acid, malonic acid, succinic acid, glutaric acid, and adipic acid) generated via electrospray ionization (ESI) are investigated using collision-induced dissociation (CID). Singly charged cationic clusters with the composition (Na+)(n+1)(dicarboxylate(2-))(n), where n = 1-5, are observed as major gas-phase species. Significant abundances of singly charged sodiated hydrogen dicarboxylate clusters with the composition (Na+)(2n)(dicarboxylate(2-))(n)(H+) where n = 1-6, are observed with oxalic acid, malonic acid, and succinic acid. Isolation of the clusters followed by CID results mainly in sequential loss of disodium dicarboxylate moieties for the clusters of succinic acid, glutaric acid, and adipic acid. However, the dimer of sodiated hydrogen succinate, all malonate clusters, and all oxalate clusters, with the exception of the dimer, exhibit complex chemical reactions initiated by the collision of vibrationally excited clusters with water molecules. Generally, water molecules serve as proton donors for reacting dicarboxylate anions in the cluster, initiating dissociation pathways such as the decomposition of the malonate ion to yield an acetate ion and CO2. The reactivity of several mixed dicarboxylate clusters is also reported. For example, malonate anion is shown to be more reactive than oxalate anion for decarboxylation when both are present in a cluster. The energetics of several representative cluster phase reactions are evaluated using computational modeling. The present results for cationic clusters are compared and contrasted to earlier studies of anionic sodiated dicarboxylic acid clusters.
机译:使用碰撞诱导离解(CID)研究了通过电喷雾电离(ESI)生成的二羧酸(草酸,丙二酸,琥珀酸,戊二酸和己二酸)的阳离子气相簇的同源序列。观察到组成为(Na +)(n + 1)(二羧酸酯(2-))(n)的单电荷阳离子簇是主要的气相物质,其中n = 1-5。用草酸,丙二酸和琥珀酸观察到大量单电荷的钠化二羧酸氢盐簇,其组成为(Na +)(2n)(二羧酸盐(2-))(n)(H +),其中n = 1-6 。簇的分离和随后的CID主要导致琥珀酸,戊二酸和己二酸的簇的二羧酸二钠部分的连续损失。但是,除了丁二聚体以外,琥珀酸氢化钠,所有丙二酸酯簇和所有草酸酯簇的二聚体均表现出由振动激发的簇与水分子碰撞引发的复杂化学反应。通常,水分子充当质子供体,用于使簇中的二羧酸根阴离子发生反应,从而引发离解途径,例如丙二酸根离子的分解,从而生成乙酸根离子和CO2。还报道了几种混合的二羧酸盐簇的反应性。例如,当两者都存在于簇中时,丙二酸根阴离子显示出比草酸根阴离子更具反应性。使用计算模型评估了几个代表性簇相反应的能量。对阳离子簇的当前结果进行了比较,并将其与阴离子磺化二羧酸簇的早期研究进行了对比。

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