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Rhodium-catalyzed ortho-heteroarylation of phenols: directing group-enabled switching of the electronic bias for heteroaromatic coupling partner

机译:铑催化的酚的邻杂芳基化:指导杂芳族偶联伙伴的电子偏置的基团启用切换

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摘要

The directed oxidative C–H/C–H cross-coupling reactions between a functionalized arene and a heteroarene typically exhibit an electronic bias for the heteroaromatic coupling partner. Disclosed herein is a conception of directing group enabled-switching of the electronic bias for coupling partner from the electron-deficient to electron-rich heteroarene, demonstrating that the modification of the directing group may match the latent reactivity of heteroarene substrates caused by the distinctly different electronic nature. In this work, we develop a Rh(iii)-catalyzed ortho-heteroarylation of phenols with greatly important electron-rich heteroarenes such as benzothiophene, benzofuran, thiophene, furan and pyrrole via two-fold C–H activation, which presents broad substrate scopes of both phenols and electron-rich heteroarenes and shows the advantage of tolerance of reactive functional groups, especially halogen. This work also provides a new strategy for the construction of π-conjugated furan-fused heteroacenes prevalent in materials science in dramatically simplified procedures, which makes the protocol highly applicable.
机译:功能化芳烃和杂芳烃之间的定向氧化C–H / C–H交叉偶联反应通常对杂芳族偶联伙伴表现出电子偏压。本文公开了一种引导基团使偶联剂的电子偏压从缺电子的杂芳烃转变为富电子的杂芳烃的概念,这表明该定向基团的修饰可以匹配由于明显不同而引起的杂芳烃底物的潜在反应性电子性质。在这项工作中,我们通过双重的C–H活化作用,开发了Rh(iii)催化的酚与非常重要的富含电子的杂芳烃如苯并噻吩,苯并呋喃,噻吩,呋喃和吡咯的邻位杂芳基化反应,该方法具有广泛的底物范围酚和富电子的杂芳烃都具有很好的耐受性,并且显示了对反应性官能团(特别是卤素)的耐受性。这项工作还为以显着简化的程序构建在材料科学中普遍存在的π-共轭呋喃-熔合并苯炔提供了新的策略,这使该协议具有很高的适用性。

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