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直接催化锂有机化合物的交叉偶联反应。

Direct catalytic cross-coupling of organolithium compounds.

机构信息

Stratingh Institute for Chemistry, University of Groningen, Nijenborgh 4, 9747 AG, Groningen, The Netherlands.

出版信息

Nat Chem. 2013 Aug;5(8):667-72. doi: 10.1038/nchem.1678. Epub 2013 Jun 9.

Abstract

Catalytic carbon-carbon bond formation based on cross-coupling reactions plays a central role in the production of natural products, pharmaceuticals, agrochemicals and organic materials. Coupling reactions of a variety of organometallic reagents and organic halides have changed the face of modern synthetic chemistry. However, the high reactivity and poor selectivity of common organolithium reagents have largely prohibited their use as a viable partner in direct catalytic cross-coupling. Here we report that in the presence of a Pd-phosphine catalyst, a wide range of alkyl-, aryl- and heteroaryl-lithium reagents undergo selective cross-coupling with aryl- and alkenyl-bromides. The process proceeds quickly under mild conditions (room temperature) and avoids the notorious lithium halogen exchange and homocoupling. The preparation of key alkyl-, aryl- and heterobiaryl intermediates reported here highlights the potential of these cross-coupling reactions for medicinal chemistry and material science.

摘要

基于交叉偶联反应的催化碳-碳键形成在天然产物、药物、农用化学品和有机材料的生产中起着核心作用。各种有机金属试剂和有机卤化物的偶联反应改变了现代合成化学的面貌。然而,常见的有机锂试剂的高反应性和差选择性在很大程度上阻止了它们作为直接催化交叉偶联的可行伙伴的使用。在这里,我们报告说,在 Pd-膦催化剂的存在下,各种烷基、芳基和杂芳基-锂试剂与芳基和烯基-溴化物进行选择性交叉偶联。该过程在温和条件(室温)下快速进行,并避免了臭名昭著的锂卤交换和同偶联。这里报道的关键烷基、芳基和杂芳基中间体的制备突出了这些交叉偶联反应在药物化学和材料科学中的潜力。

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