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通过使用源自拱形联萘酚和拱形联菲罗啉配体的硼酸盐催化剂进行不对称催化氮杂环丙烷化反应直接制备N - H - 氮杂环丙烷。

Direct access to N-H-aziridines from asymmetric catalytic aziridination with borate catalysts derived from vaulted binaphthol and vaulted biphenanthrol ligands.

作者信息

Lu Zhenjie, Zhang Yu, Wulff William D

机构信息

Department of Chemistry, Michigan State University, East Lansing, Michigan 48824, USA.

出版信息

J Am Chem Soc. 2007 Jun 6;129(22):7185-94. doi: 10.1021/ja069371r. Epub 2007 May 12.

Abstract

The asymmetric catalytic aziridination reaction (AZ reaction) of N-dianisylmethylimines (N-DAM-imines) with ethyl diazoacetate is developed with chiral catalysts prepared from triphenylborate and both the vaulted binaphthol (VANOL) and vaulted biphenanthrol (VAPOL) ligands. Catalysts derived from both ligands were equally effective in terms of asymmetric induction, but the VANOL catalyst was slightly faster. Up to 400 turnovers could be achieved with the VANOL catalyst while still maintaining>or=90% ee in the aziridine product. The ligand could be recovered in 95% yield with no loss in optical purity. Excellent asymmetric inductions were observed with arylimines, and although slightly lower inductions were observed for alkyl-substituted imines, the optical purity of the aziridines from all of the imine substrates could be enhanced to>or=99% ee with a single crystallization. Methods were developed for deprotection of the N-DAM-aziridines under acidic conditions without causing an acid-promoted opening of the ring. Excellent yields of the N-H-aziridines could be obtained with both alkyl- and aryl-substituted aziridines. Finally, activation of the N-H-aziridines was achieved with Boc, tosyl, and Fmoc groups. The activated aziridines can be converted to beta3-amino esters, and unexpectedly, the N-Boc-protected aziridine-2-carboxylate 16b with a phenyl substituent in the 3-position cis to the ester group was found to undergo ring expansion to a mixture of cis- and trans-oxazolidinones.

摘要

利用由硼酸三苯酯与拱形联萘酚(VANOL)配体和拱形联菲罗啉(VAPOL)配体制备的手性催化剂,实现了N - 二茴香基甲基亚胺(N - DAM - 亚胺)与重氮乙酸乙酯的不对称催化氮杂环丙烷化反应(AZ反应)。源自这两种配体的催化剂在不对称诱导方面同样有效,但VANOL催化剂的反应速度稍快。使用VANOL催化剂可实现高达400次的周转数,同时氮杂环丙烷产物的对映体过量(ee)仍保持≥90%。配体可以95%的产率回收,且光学纯度无损失。对于芳基亚胺观察到了优异的不对称诱导效果,尽管对于烷基取代的亚胺观察到的诱导效果略低,但通过单次结晶,所有亚胺底物生成的氮杂环丙烷的光学纯度均可提高到≥99% ee。开发了在酸性条件下对N - DAM - 氮杂环丙烷进行脱保护而不引起酸促进的开环的方法。对于烷基和芳基取代的氮杂环丙烷,均可获得优异产率的N - H - 氮杂环丙烷。最后,用Boc、甲苯磺酰基和Fmoc基团实现了N - H - 氮杂环丙烷的活化。活化的氮杂环丙烷可转化为β3 - 氨基酯,出乎意料的是,发现在3 - 位与酯基顺式的苯基取代的N - Boc - 保护的氮杂环丙烷 - 2 - 羧酸酯16b会发生环扩张,生成顺式和反式恶唑烷酮的混合物。

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