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Non-Classical Amide Bond Formation: Transamidation and Amidation of Activated Amides and Esters by Selective N–C/O–C Cleavage

机译:非古典酰胺键形成:通过选择性N-C / O-C切割进行活性酰胺和酯的透析和酰胺化

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In the past several years, tremendous advances have been made in non-classical routes for amide bond formation that involve transamidation and amidation reactions of activated amides and esters. These new methods enable the formation of extremely valuable amide bonds via transition-metal-catalyzed, transition-metal-free, or metal-free pathways by exploiting chemoselective acyl C–X (X = N, O) cleavage under mild conditions. In a broadest sense, these reactions overcome the formidable challenge of activating C–N/C–O bonds of amides or esters by rationally tackling n_(N) → π*_(C=O) delocalization in amides and n_(O) → π*_(C=O) donation in esters. In this account, we summarize the recent remarkable advances in the development of new methods for the synthesis of amides with a focus on (1) transition-metal/NHC-catalyzed C–N/C–O bond activation, (2) transition-metal-free highly selective cleavage of C–N/C–O bonds, (3) the development of new acyl-transfer reagents, and (4) other emerging methods.1 Introduction2 Transamidation of Amides2.1 Transamidation by Metal–NHC Catalysis (Pd–NHC, Ni–NHC)2.2 Transition-Metal-Free Transamidation via Tetrahedral Intermediates2.3 Reductive Transamidation2.4 New Acyl-Transfer Reagents2.5 Tandem Transamidations3 Amidation of Esters3.1 Amidation of Esters by Metal–NHC Catalysis (Pd–NHC, Ni–NHC)3.2 Transition-Metal-Free Amidation of Esters via Tetrahedral Intermediates3.3 Reductive Amidation of Esters4 Transamidations of Amides by Other Mechanisms5 Conclusions and Outlook.
机译:在过去的几年中,巨大进步已经在非经典途径用于酰胺键形成,涉及活化酰胺和酯的酰氨化和酰胺化反应制备。这些新的方法通过利用化学选择性酰基C-X(X = N,O)的裂解在温和条件下使过渡通过金属催化,过渡金属不含或不含金属的途径的极有价值的酰胺键的形成。在一个宽泛的意义上说,这些反应通过合理地解决N_(N)→π* _(C = O)的离域在酰胺和N_(O)→克服活化的酰胺或酯的C-N / C-O键的艰巨的挑战π* _(C = O)捐赠酯。此帐户中,我们总结最近的酰胺的重点是(1)过渡金属/ NHC催化的C-N / C-O键活化合成新方法的发展的显着的进展,(2)transition-不含金属的C-N / C-O键的高度选择性裂解,(3)的新的酰基转移试剂的发展,以及(4)Amides2.1酰氨的其他新兴methods.1 Introduction2酰氨通过金属催化NHC(钯NHC,镍NHC)2.2过渡金属免费通过酯Esters3.1酰胺化的四面体Intermediates2.3还原Transamidation2.4新酰基转移Reagents2.5串联Transamidations3酰胺化转 - 由金属NHC催化(PD-NHC ,镍NHC)通过酰胺Esters4 Transamidations的四面体Intermediates3.3还原酰胺化通过其他Mechanisms5结论与展望酯3.2过渡金属免费酰胺化。

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