Department of Chemistry, Wayne State University , Detroit, Michigan 48202, United States.
J Org Chem. 2017 May 19;82(10):5345-5353. doi: 10.1021/acs.joc.7b00717. Epub 2017 May 8.
The influence of the electron-withdrawing azide group on the reduction of O-(1-acyloxy-ω-azido)hydroxylamines by triethylsilane in the presence of boron trifluoride etherate is studied and found to increase with increasing proximity to the reaction site, suggesting that the reaction proceeds by way of aminoxocarbenium ion intermediates. The ability to carry azides through the reaction sequence affords O-(ω-azidoalkyl-N,N-dialkylhydroxylamines thereby making such functionality available for use in click chemistry. A series of 4-substituted N-alkoxypiperidines were prepared and studied by variable temperature NMR spectroscopy leading to the conclusion that the rate-determining step in the stereomutation of such piperidines is the piperidine ring flip and not nitrogen inversion or rotation about the N-O bond. The process of N-O bond rotation only becomes rate determining when in the presence of pervasive steric hindrance as is the case with the N-alkoxy-2,2,6,6-tetramethylpiperidines.
研究了吸电子叠氮基团对三乙基硅烷在三氟化硼乙醚存在下还原 O-(1-酰氧基-ω-叠氮基)羟胺的影响,发现其影响随反应位点的接近而增加,这表明反应是通过氨羰正离子中间体进行的。通过反应序列携带叠氮化物的能力提供了 O-(ω-叠氮烷基-N,N-二烷基羟胺,从而使这种官能团可用于点击化学。通过变温 NMR 光谱法制备并研究了一系列 4-取代的 N-烷氧基哌啶,得出的结论是,这种哌啶的立体异构化的速率决定步骤是哌啶环翻转,而不是氮的反转或 N-O 键的旋转。只有在存在普遍的空间位阻时,N-O 键旋转才成为速率决定步骤,如 N-烷氧基-2,2,6,6-四甲基哌啶的情况。