Wang Shanshan, Yu Lian, Wu Yanqing, Guo Cheng, Zhang Ningwen, Jiang Kezhi
Key Laboratory of Organosilicon Chemistry and Material Technology, Hangzhou Normal University, Hangzhou, 311121, China.
J Am Soc Mass Spectrom. 2015 Aug;26(8):1428-31. doi: 10.1007/s13361-015-1156-4. Epub 2015 May 12.
The gas-phase dissociation chemistry of protonated N,2-diphenyl-N'-(p-toluenesulfonyl) ethanimidamides was investigated by electrospray ionization mass spectrometry in combination with density functional theory calculation. The protonated molecules underwent fragmentation via two main competing channels: (1) migration of the tosyl cation to the anilinic N atom and the subsequent loss of 2-phenylacetonitrile to afford protonated N-phenyl p-toluenesulfonamide (m/z 248); and (2) transfer of the ionizing proton to the anilinic N atom to give an ion/neutral complex of [tosyl cation / 2-phenylacetonitrile] (m/z 272) and the subsequent decomposition to yield tosyl cation (m/z 155). To the best of our knowledge, the gas-phase tosyl cation transfer has not been reported previously. For the para-substituted sulfonamides, the presence of electron-donating groups on the anilinic ring inhibits the reaction channel of the tosyl cation migration, whereas the presence of electron-withdrawing groups favors this pathway.
采用电喷雾电离质谱联用密度泛函理论计算方法,研究了质子化的N,2-二苯基-N'-(对甲苯磺酰基)乙亚胺酰胺的气相解离化学。质子化分子通过两个主要竞争通道发生裂解:(1) 对甲苯磺酰阳离子迁移至苯胺基N原子,随后失去2-苯乙腈,生成质子化的N-苯基对甲苯磺酰胺(m/z 248);(2) 电离质子转移至苯胺基N原子,生成[对甲苯磺酰阳离子 / 2-苯乙腈]的离子/中性复合物(m/z 272),随后分解生成对甲苯磺酰阳离子(m/z 155)。据我们所知,此前尚未报道过气相中对甲苯磺酰阳离子转移的情况。对于对位取代的磺酰胺,苯胺环上供电子基团的存在抑制了对甲苯磺酰阳离子迁移的反应通道,而吸电子基团的存在则有利于该途径。