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Asymmetric Nitrene Transfer Reactions: Sulfimidation, Aziridination and C–H Amination Using Azide Compounds as Nitrene Precursors

机译:不对称的硝基转移反应:使用叠氮化物作为前驱体的亚氨基酰亚胺化,叠氮化和CH氨基化

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摘要

Nitrogen functional groups are found in many biologically active compounds and their stereochemistry has a profound effect on biological activity. Nitrene transfer reactions such as aziridination, C–H bond amination, and sulfimidation are useful methods for introducing nitrogen functional groups, and the enantiocontrol of the reactions has been extensively investigated. Although high enantioselectivity has been achieved, most of the reactions use (N-arylsulfonylimino) phenyliodinane, which co-produces iodobenzene, as a nitrene precursor and have a low atom economy. Azide compounds, which give nitrene species by releasing nitrogen, are ideal precursors but rather stable. Their decomposition needs UV irradiation, heating in the presence of a metal complex, or Lewis acid treatment. The examples of previous azide decomposition prompted us to examine Lewis acid and low-valent transition-metal complexes as catalysts for azide decomposition. Thus, we designed new ruthenium complexes that are composed of a low-valent Ru(II) ion, apical CO ligand, and an asymmetry-inducing salen ligand.With these ruthenium complexes and azides, we have achieved highly enantioselective nitrene transfer reactions under mild conditions. Recently, iridium–salen complexes were added to our toolbox.
机译:氮官能团存在于许多生物活性化合物中,其立体化学对生物活性具有深远的影响。诸如转移氮,CH键胺化和磺酰亚胺化等丁二烯转移反应是引入氮官能团的有用方法,并且对反应的对映控制已得到广泛研究。尽管已经实现了高对映选择性,但大多数反应使用的是联产碘代苯的(N-芳基磺酰亚胺基)苯基碘丁烷作为亚硝基前体,并且具有较低的原子经济性。通过释放氮而产生亚硝基物质的叠氮化合物是理想的前体,但相当稳定。它们的分解需要紫外线照射,在金属络合物存在下加热或路易斯酸处理。先前叠氮化物分解的例子促使我们研究路易斯酸和低价过渡金属络合物作为叠氮化物分解的催化剂。因此,我们设计了由低价Ru(II)离子,顶端CO配体和不对称诱导的Salen配体组成的新型钌配合物。借助这些钌配合物和叠氮化物,我们在温和的条件下实现了高度对映选择性的氮转移反应条件。最近,铱-salen配合物被添加到我们的工具箱中。

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