Mass spectrometric detection of ion pairs containing rigid copper clusters and weakly coordinating counter ions using liquid injection field desorption/ionisation.

IF 1.1 4区 化学 Q4 PHYSICS, ATOMIC, MOLECULAR & CHEMICAL
Julia Taubert, Matthias Vogt, Robert Langer
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引用次数: 2

Abstract

A comparative mass spectrometric investigation using electrospray ionisation (ESI) and liquid injection field desorption/ionisation (LIFDI) techniques is reported for the highly luminescent and cationic copper cluster [(PCP)3Cu4]+ (1[Formula: see text], PCP = [1,3-(Ph2P)2C6H3]-). Depending on the available counter ion X-, ion pairs consisting of the original or a modified cluster cation and the weakly coordinating counter ion can be detected by LIFDI-high-resolution-mass spectrometry in addition to the cluster cation. Notably, only large counter ions with an extremely low tendency for metal coordination give rise to the observation of ion pairs, whereas smaller ions such as BF4- do not show peaks corresponding to ion pairs in their mass spectra. In principle, two pathways were identified for the formation of positively charged ion pairs: (i) association of a generated Cu+ ion to the neutral ion pair [(PCP)3Cu4]X (1+X, X- = BAr20F, BAr24F) and (ii) abstraction of an electron from the neutral ion pair [(PCP)3Cu4]X (1+X), leading to the oxidised ion pair [1+X][Formula: see text] (X- = Al(ORF)4).

用液体注入场解吸/电离法质谱检测含有刚性铜簇和弱配位反离子的离子对。
采用电喷雾电离(ESI)和液体注入场解吸/电离(LIFDI)技术对高发光阳离子铜簇[(PCP)3Cu4]+(1[公式:见文],PCP = [1,3-(Ph2P)2C6H3]-)进行了质谱对比研究。根据可用的反离子X-,除了簇阳离子外,lifdi -高分辨率质谱法还可以检测到由原始或修饰的簇阳离子和弱配位反离子组成的离子对。值得注意的是,只有具有极低金属配位倾向的大反离子才能引起离子对的观察,而较小的离子如BF4-在其质谱中没有显示相应的离子对峰。原则上,确定了两种正电荷离子对形成的途径:(i)生成的Cu+离子与中性离子对[(PCP)3Cu4]X (1+X, X- = BAr20F, BAr24F)结合,(ii)从中性离子对[(PCP)3Cu4]X (1+X)中提取电子,导致氧化离子对[1+X][公式:见文本](X- = Al(ORF)4))。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
2.40
自引率
7.70%
发文量
16
审稿时长
>12 weeks
期刊介绍: JMS - European Journal of Mass Spectrometry, is a peer-reviewed journal, devoted to the publication of innovative research in mass spectrometry. Articles in the journal come from proteomics, metabolomics, petroleomics and other areas developing under the umbrella of the “omic revolution”.
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