School of Chemistry, University of Southampton, Southampton, SO17 1BJ, UK.
J Mass Spectrom. 2010 Apr;45(4):347-57. doi: 10.1002/jms.1714.
The experimental investigation of site-specific intra-ionic hydrogen/deuterium (H/D) exchange in the low-energy collision-induced dissociation (CID) product ion spectra of protonated small molecules generated by electrospray ionisation (ESI) is presented. The observation of intra-ionic H/D exchange in such ions under low-energy CID conditions has hitherto been rarely reported. The data suggest that the intra-ionic H/D exchange takes place in a site-specific manner between the ionising deuteron, localised at either a tertiary amine or a tertiary amine-N-oxide, and a gamma-hydrogen relative to the nitrogen atom. Nuclear magnetic resonance (NMR) spectroscopy measurements showed that no H/D exchange takes place in solution, indicating that the reaction occurs in the gas phase. The compounds analysed in this study suggested that electron-withdrawing groups bonded to the carbon atom bearing the gamma-hydrogen can preclude exchange. The effect of the electron-withdrawing group appears dependent upon its electronegativity, with lower chi value groups still allowing exchange to take place. However, the limited dataset available in this study prevented robust conclusions being drawn regarding the effect of the electron-withdrawing group. The observation of site-specific intra-ionic H/D exchange has application in the area of structural elucidation, where it could be used to introduce an isotopic label into the carbon skeleton of a molecule containing specific structural features. This could increase the throughput, and minimise the cost, of such studies due to the obviation of the need to produce a deuterium-labelled analogue by synthetic means.
本文报道了通过电喷雾电离(ESI)产生的质子化小分子的低能碰撞诱导解离(CID)产物离子谱中特定位置的离子内氢/氘(H/D)交换的实验研究。迄今为止,很少有报道在低能 CID 条件下观察到此类离子中的离子内 H/D 交换。数据表明,离子内 H/D 交换在位于叔胺或叔胺-N-氧化物中的离解氘原子与相对于氮原子的γ-氢原子之间以特定位置的方式发生。核磁共振(NMR)光谱测量表明,在溶液中没有 H/D 交换,这表明反应发生在气相中。本研究分析的化合物表明,与携带γ-氢的碳原子键合的吸电子基团可以阻止交换。吸电子基团的影响似乎取决于其电负性,较低的 chi 值基团仍允许交换发生。然而,由于本研究中可用的数据集有限,因此无法就吸电子基团的影响得出可靠的结论。特定位置的离子内 H/D 交换的观察结果在结构阐明领域具有应用价值,它可以将同位素标记引入含有特定结构特征的分子的碳骨架中。由于避免了通过合成手段制备氘标记类似物的需要,这可以提高此类研究的效率,并降低成本。