Shiga Keigo, Gridnev Ilya D, Terada Masahiro, Nakamura Itaru
Department of Chemistry , Graduate School of Science , Tohoku University , Sendai , 980-8578 , Japan.
Research and Analytical Center for Giant Molecules , Graduate School of Science , Tohoku University , Sendai , 980-8578 , Japan . Email:
Chem Sci. 2019 Apr 18;10(20):5283-5289. doi: 10.1039/c9sc00501c. eCollection 2019 May 28.
-Propargylic oximes that possess an electron-withdrawing aryl group on the oxime moiety undergo Au-catalyzed skeletal rearrangements N-O bond cleavage to afford the corresponding 2-1,3-oxazine derivatives. Our studies show that the inclusion of a Brønsted base cocatalyst not only accelerates the reaction but also switches pathways of the skeletal rearrangement reaction, realizing divergent synthesis of heterocyclic compounds. Computational studies indicate that the elimination of propargylic proton in the cyclized vinylgold intermediate is rate-determining and both electron-withdrawing substituents at the oxime moiety and base cocatalyst facilitate the proton elimination. Moreover, the protodeauration process proceeds stepwise involving N-O bond cleavage followed by recyclization to construct the oxazine core.
肟基部分带有吸电子芳基的炔丙基肟会发生金催化的骨架重排和N-O键断裂,生成相应的2-1,3-恶嗪衍生物。我们的研究表明,加入布朗斯特碱共催化剂不仅能加速反应,还能改变骨架重排反应的途径,实现杂环化合物的发散合成。计算研究表明,环化乙烯基金中间体中炔丙基质子的消除是速率决定步骤,肟基部分的吸电子取代基和碱共催化剂都有助于质子消除。此外,脱金质子化过程是分步进行的,包括N-O键断裂,然后进行环化以构建恶嗪核心。