Yao Liqing, Chai Yunfeng, Sun Cuirong, Pan Yuanjiang
Department of Chemistry, Zhejiang University, Hangzhou, 310027, Zhejiang, China.
J Mass Spectrom. 2015 Feb;50(2):364-70. doi: 10.1002/jms.3537.
The gas-phase chemistry of deprotonated benzyl N-phenylcarbamates was investigated by electrospray ionization tandem mass spectrometry. Characteristic losses of a substituted phenylcarbinol and a benzaldehyde from the precursor ion were proposed to be derived from an ion-neutral complex (INC)-mediated competitive proton and hydride transfer reactions. The intermediacy of the INC consisting of a substituted benzyloxy anion and a phenyl isocyanate was supported by both ortho-site-blocking experiments and density functional theory calculations. Within the INC, the benzyloxy anion played the role of either a proton abstractor or a hydride donor toward its neutral counterpart. Relative abundances of the product ions were influenced by the nature of the substituents. Electron-withdrawing groups at the N-phenyl ring favored the hydrogen transfer process (including proton and hydride transfer), whereas electron-donating groups favored direct decomposition to generate the benzyloxy anion (or substituted benzyloxy anion). By contrast, electron-withdrawing and electron-donating substitutions at the O-benzyl ring exhibited opposite effects.
通过电喷雾电离串联质谱法研究了去质子化苄基 N-苯基氨基甲酸酯的气相化学性质。有人提出,前体离子中取代苯甲醇和苯甲醛的特征性损失源自离子-中性复合物(INC)介导的竞争性质子和氢化物转移反应。由取代苄氧基阴离子和苯基异氰酸酯组成的 INC 的中间体得到了邻位阻断实验和密度泛函理论计算的支持。在 INC 中,苄氧基阴离子对其中性对应物起到了质子抽取剂或氢化物供体的作用。产物离子的相对丰度受取代基性质的影响。N-苯基环上的吸电子基团有利于氢转移过程(包括质子和氢化物转移),而供电子基团有利于直接分解生成苄氧基阴离子(或取代苄氧基阴离子)。相比之下,O-苄基环上的吸电子和供电子取代表现出相反的效果。