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直接实时分析在化学蒸气发生机制研究中的应用:胺硼烷中间水解产物的鉴定。

Application of direct analysis in real time to the study of chemical vapor generation mechanisms: identification of intermediate hydrolysis products of amine-boranes.

机构信息

National Research Council Canada, 1200 Montreal Road, Ottawa, ON, K1A 0R6, Canada.

C.N.R, Institute of Chemistry of Organometallic Compounds, S.S. of Pisa, Via. G Moruzzi, 1, 56124, Pisa, Italy.

出版信息

Anal Bioanal Chem. 2019 Mar;411(8):1569-1578. doi: 10.1007/s00216-019-01598-4. Epub 2019 Jan 28.

Abstract

In order to elucidate controversial results emerging in chemical vapor generation (CVG) for trace element determination, we conducted a series of experiments devoted to the identification of intermediates formed by acid hydrolysis of amine-boranes. For the first time, direct analysis in real time coupled with high-resolution mass spectrometry (DART-Orbitrap) was applied for detection of this class of compounds. Mass spectra of both solid amine-boranes and their aqueous solutions (pH ~ 8, no hydrolysis) were acquired for understanding their ionization pathway. Mass spectra of aqueous solutions of t-BuNH·BH and MeNH·BH were acquired under conditions that are employed in CVG (0.017-4.0 mol L HCl, 0.167-0.2 mol L borane reagent). The results disclose a reactivity driven by pH of amine-boranes undergoing hydrolysis. At low acidity, the hydrolysis proceeds according to the currently accepted displacement mechanisms (i.e., RN·BH + HO → RNH + HOBH). At higher acidity, N-tert-butyl, cyclotriborazane, and bis(dimethylamino)boronium were identified, for the first time, during the hydrolysis of t-BuNH·BH and MeNH·BH, respectively. Formation of these intermediates was ascribed to a hydrolysis pathway starting with the ionization of the amine-borane, (i.e., RN·BH + HO → [(HO)RNBH] + H). The new evidence explains the anomalous behavior observed in CVG by amine-borane derivatization, and updates the currently accepted mechanisms for the acid hydrolysis of amine-boranes. Graphical Abstract.

摘要

为了阐明微量元素测定中化学蒸气发生(CVG)中出现的有争议的结果,我们进行了一系列实验,致力于鉴定伯胺硼烷酸水解形成的中间产物。首次应用实时直接分析与高分辨率质谱(DART-Orbitrap)直接分析实时直接分析与高分辨率质谱(DART-Orbitrap)用于检测此类化合物。为了了解其离子化途径,我们分别获得了固态伯胺硼烷及其水溶液(pH~8,未水解)的质谱。在 CVG 中采用的条件下(0.017-4.0 mol L HCl、0.167-0.2 mol L 硼烷试剂)获得了 t-BuNH·BH 和 MeNH·BH 水溶液的质谱。结果揭示了由伯胺硼烷水解的 pH 驱动的反应性。在低酸度下,水解按照目前公认的取代机制进行(即,RN·BH + HO → RNH + HOBH)。在较高酸度下,首次鉴定出 t-BuNH·BH 和 MeNH·BH 水解过程中分别生成 N-叔丁基、环三硼烷和双(二甲基氨基)硼鎓。这些中间体的形成归因于一种水解途径,从伯胺硼烷的离子化开始,(即,RN·BH + HO → [(HO)RNBH] + H)。新的证据解释了通过伯胺硼烷衍生化在 CVG 中观察到的异常行为,并更新了目前公认的伯胺硼烷酸水解机制。

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