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通过N-(9-烷基)芴基取代的N-杂环卡宾实现的金属限制及其在涉及烯炔的金催化反应中的影响。

Metal Confinement through N-(9-Alkyl)fluorenyl-Substituted N-Heterocyclic Carbenes and Its Consequences in Gold-Catalysed Reactions Involving Enynes.

作者信息

Teci Matthieu, Hueber Damien, Pale Patrick, Toupet Loïc, Blanc Aurélien, Brenner Eric, Matt Dominique

机构信息

Laboratoire de Chimie Inorganique Moléculaire et Catalyse, Institut de Chimie, UMR 7177 CNRS, Université de Strasbourg, 4 rue Blaise Pascal, 67070, Strasbourg, France.

Laboratoire de Synthèse, Réactivité Organiques et Catalyse, Institut de Chimie, UMR 7177 CNRS, Université de Strasbourg, 4 rue Blaise Pascal, 67070, Strasbourg, France.

出版信息

Chemistry. 2017 Jun 7;23(32):7809-7818. doi: 10.1002/chem.201701129. Epub 2017 May 19.

Abstract

A series of gold(I) and gold(III) complexes containing bulky bis-N,N'-(9-alkylfluorenyl) heterocyclic carbene ( F-NHC) ligands have been prepared in high yields from appropriate imidazolinium, imidazolium and benzimidazolium salts. In all complexes, the carbene ligand provides high steric protection of the Au-X bond trans to the carbenic C atom. Irrespective of the metal oxidation state, the complexes showed high efficiency in a tandem 3,3-rearrangement/Nazarov reaction of an enynyl acetate. One of the Au complexes, [AuCl ( F-NHC)], was further found to be suitable for the efficient cyclisation of a propargylcarboxamide. Furthermore, unlike related NHC-gold(I) complexes based on conventional bulky N-heterocyclic carbenes (notably, 1,3-bis-(2,6-diisopropylphenyl)imidazol-2-ylidene (IPr), 1,3-bis-(2,4,6-trimethylphenyl)imidazol-2-ylidene (IMes) and 1,3-(bis-tert-butyl)imidazol-2-ylidene (ItBu)), the studied [Au Cl( F-NHC)] complexes catalysed the conversion of a 1,6-enyne in the presence of indole into a single product; this arises from the embracing character of the ligand, which prevents indole addition on one of the catalytic intermediates. A structure/selectivity relationship was established for all carbenes tested that took into account percent buried volumes and topographic steric maps. The results illustrate the high potential of confining NHCs in organic synthesis.

摘要

通过合适的咪唑啉鎓盐、咪唑鎓盐和苯并咪唑鎓盐,已高产率制备了一系列含有庞大的双 - N,N'-(9 - 烷基芴基)杂环卡宾(F - NHC)配体的金(I)和金(III)配合物。在所有配合物中,卡宾配体为与卡宾碳(C)原子反位的Au - X键提供了高度的空间保护。无论金属氧化态如何,这些配合物在乙酸烯炔酯的串联3,3 - 重排/纳扎罗夫反应中均表现出高效率。进一步发现其中一种金配合物[AuCl(F - NHC)]适用于炔丙基羧酰胺的高效环化。此外,与基于传统庞大N - 杂环卡宾(特别是1,3 - 双 - (2,6 - 二异丙基苯基)咪唑 - 2 - 亚基(IPr)、1,3 - 双 - (2,4,6 - 三甲基苯基)咪唑 - 2 - 亚基(IMes)和1,3 - (双 - 叔丁基)咪唑 - 2 - 亚基(ItBu))的相关NHC - 金(I)配合物不同,所研究的[Au Cl(F - NHC)]配合物在吲哚存在下催化1,6 - 烯炔转化为单一产物;这源于配体的包合特性,它阻止了吲哚在其中一种催化中间体上的加成。考虑到掩埋体积百分比和拓扑空间图,为所有测试的卡宾建立了结构/选择性关系。结果说明了在有机合成中限制NHC的巨大潜力。

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