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Synthesis of Cyclic Anhydrides via Ligand-Enabled C-H Carbonylation of Simple Aliphatic Acids

机译:通过简单的脂族酸的配体的C-H羰基化合成环状酸酐

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摘要

The development of C(sp(3))-H functionalizations of free carboxylic acids has provided a wide range of versatile C-C and C-Y (Y=heteroatom) bond-forming reactions. Additionally, C-H functionalizations have lent themselves to the one-step preparation of a number of valuable synthetic motifs that are often difficult to prepare through conventional methods. Herein, we report a beta- or gamma-C(sp(3))-H carbonylation of free carboxylic acids using Mo(CO)(6) as a convenient solid CO source and enabled by a bidentate ligand, leading to convenient syntheses of cyclic anhydrides. Among these, the succinic anhydride products are versatile stepping stones for the mono-selective introduction of various functional groups at the beta position of the parent acids by decarboxylative functionalizations, thus providing a divergent strategy to synthesize a myriad of carboxylic acids inaccessible by previous beta-C-H activation reactions. The enantioselective carbonylation of free cyclopropanecarboxylic acids has also been achieved using a chiral bidentate thioether ligand
机译:游离羧酸的C(sp(3))-H官能化的发展提供了广泛的C-C和C-Y(Y=杂原子)键形成反应。此外,C-H功能化有助于一步制备许多有价值的合成基序,这些基序通常很难通过常规方法制备。在本文中,我们报道了游离羧酸的β-或γ-C(sp(3))-H羰基化,使用Mo(CO)(6)作为方便的固体共源,并通过双齿配体实现,从而方便地合成环酸酐。其中,丁二酸酐产品是通过脱羧官能化在母体酸的β位置单选择引入各种官能团的多功能垫脚石,因此提供了一种不同的策略来合成之前β-C-H活化反应无法合成的无数羧酸。还利用手性双齿硫醚配体实现了游离环丙烷羧酸的对映选择性羰基化

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