首页> 外文期刊>International journal of mass spectrometry >Studies on alkali and alkaline earth chromate by time-of-flight laser microprobe mass spectrometry and Fourier transform ion cyclotron resonance mass spectrometry. Part I: differentiation of chromate compounds
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Studies on alkali and alkaline earth chromate by time-of-flight laser microprobe mass spectrometry and Fourier transform ion cyclotron resonance mass spectrometry. Part I: differentiation of chromate compounds

机译:通过飞行时间激光微探针质谱和傅里叶变换离子回旋共振质谱研究碱金属和碱土金属铬酸盐。第一部分:铬酸盐化合物的区分

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Alkali and alkaline earth chromate compounds have been examined by time-of-fligh laser microprobe mass spectrometry (TOF-LMMS) and laser ablation Fourier transform ion cyclotron resonance mass spectrometry (LA-FTICRMS). The two ion detection modes show a strong correlation with the nature of the counter ion. Similar behavior is observed with first alkali chromate and second alkaline earth chromate. In the positive detection mode, the major cluster ion induced by alkali chromate laser ablation is the M_3CrO_4~+ cation, whereas it refers to the two ion series (MO)_nCrO~+ and (MO)_nCrO_2~+ with n = 1-3 in the case of alkaline earth compounds. In the negative detection mode, whereas laser ablation of alkali chromate systematically produced mixed metal anions, in the case of alkaline earth chromate, such anions appeared but in small quantity and only in specific cases. The comparison of the results shown by FTICR mass spectra and TOF-LMMS allows for a distinction between stable and less stable ionic species, with the relative intensity of the latter dramatically decreasing on the FTICR mass spectra. Moreover, the decrease of the counter ion in electronegativity (radius growth) leads to an exacerbation of the typical behavior of the compounds belonging to the two ranges. These two observations facilitate the understanding of ion formation processes. This aspect of the study will be presented in Part II following the present work.
机译:已通过飞行时间激光微探针质谱(TOF-LMMS)和激光烧蚀傅里叶变换离子回旋共振质谱(LA-FTICRMS)检查了碱金属和碱土金属铬酸盐化合物。两种离子检测模式显示出与抗衡离子的性质密切相关。用第一碱金属铬酸盐和第二碱土金属铬酸盐观察到类似的行为。在正检测模式下,碱金属铬酸盐激光烧蚀诱导的主要簇离子为M_3CrO_4〜+阳离子,而指的是两个离子序列(MO)_nCrO〜+和(MO)_nCrO_2〜+,n = 1-3对于碱土金属化合物。在阴性检测模式下,碱金属铬酸盐的激光烧蚀会系统地产生混合金属阴离子,而在碱土金属铬酸盐的情况下,此类阴离子会出现,但数量很少且仅在特定情况下出现。通过FTICR质谱和TOF-LMMS所显示的结果进行比较,可以区分稳定离子和不稳定离子,而后者的相对强度在FTICR质谱上会急剧下降。此外,抗衡离子电负性(半径增长)的降低会导致属于这两个范围的化合物的典型行为加剧。这两个观察结果有助于理解离子形成过程。该研究的这一方面将在本工作之后的第二部分中介绍。

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