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Mild and Selective Hydrozirconation of Amides to Aldehydes Using Cp2Zr(H)Cl

机译:使用Cp2Zr(H)Cl将酰胺轻度和选择性加氢氢化为醛

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摘要

An investigation of the use of Cp2Zr(H)Cl (Schwartz’s reagent) to reduce a variety of amides to the corresponding aldehydes under very mild reaction conditions and in high yields is reported. A range of tertiary amides, including Weinreb’s amide, can be converted directly to the corresponding aldehydes with remarkable chemoselectivity. Primary and secondary amides proved to be viable substrates for reduction as well, although the yields were somewhat diminished compared to the corresponding tertiary amides. Results from NMR experiments suggested the presence of a stable, 18-electron zirconacycle intermediate that presumably affords the aldehyde upon water or silica gel workup. A series of competition experiments revealed a preference of the reagent for substrates in which the lone pair of the nitrogen is electron releasing and thus more delocalized across the amide bond by resonance. This trend accounts for the observed excellent selectivity for tertiary amides versus esters. Experiments regarding the solvent dependence of the reaction suggested a kinetic profile similar to that postulated for the hydrozirconation of alkenes and alkynes. Addition of p-anisidine to the reaction intermediate resulted in the formation of the corresponding imine mimicking the addition of water that forms the aldehyde.
机译:据报道,在非常温和的反应条件下,以高收率使用Cp2Zr(H)Cl(Schwartz试剂)将各种酰胺还原为相应的醛的方法已有研究。包括Weinreb酰胺在内的一系列叔酰胺可以直接转化为相应的醛,并具有出色的化学选择性。伯和仲酰胺也被证明是可行的还原底物,尽管与相应的叔酰胺相比收率有所降低。 NMR实验的结果表明,存在稳定的18电子氧化锆环中间体,该中间体大概是在水或硅胶处理后提供醛的。一系列竞争实验表明,该试剂偏爱底物,其中氮的孤对会释放电子,因此会通过共振在整个酰胺键上离位。这种趋势解释了所观察到的对叔酰胺与酯的优异选择性。关于反应的溶剂依赖性的实验表明,其动力学曲线类似于为烯烃和炔烃的加氢锆化所假定的动力学曲线。将对茴香胺加到反应中间体中导致形成相应的亚胺,模仿添加形成醛的水。

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