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Axial shielding of Pd(II) complexes enables perfect stereoretention in Suzuki-Miyaura cross-coupling of Csp3 boronic acids

机译:轴向屏蔽Pd(II)配合物可在Csp3硼酸的Suzuki-Miyaura交叉偶联中实现完美的立体保留

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摘要

Stereocontrolled Csp3 cross-coupling can fundamentally change the types of chemical structures that can be mined for molecular functions. Although considerable progress in achieving the targeted chemical reactivity has been made, controlling stereochemistry in Csp3 cross-coupling remains challenging. Here we report that ligand-based axial shielding of Pd(II) complexes enables Suzuki-Miyaura cross-coupling of unactivated Csp3 boronic acids with perfect stereoretention. This approach leverages key differences in spatial orientation between competing pathways for stereoretentive and stereoinvertive transmetalation of Csp3 boronic acids to Pd(II). We show that axial shielding enables perfectly stereoretentive cross-coupling with a range of unactivated secondary Csp3 boronic acids, as well as the stereocontrolled synthesis of xylarinic acid B and all of its Csp3 stereoisomers. We expect these ligand design principles will broadly enable the continued search for practical and effective methods for stereospecific Csp3 cross-coupling.
机译:立体控制的Csp 3 交叉偶联可以从根本上改变可以挖掘用于分子功能的化学结构的类型。尽管在实现目标化学反应性方面已经取得了很大进展,但是在Csp 3 交叉偶联中控制立体化学仍然具有挑战性。在这里我们报道基于Pd(II)配合物的基于配体的轴向屏蔽使未激活的Csp 3 硼酸的Suzuki-Miyaura交叉偶联具有完美的立体保留。该方法利用了Csp 3 硼酸向Pd(II)的立体保留和立体反转转化的竞争途径之间空间取向的关键差异。我们证明了轴向屏蔽可实现与一系列未激活的次级Csp 3 硼酸的完全立体保持交叉偶联,以及木糖酸B及其所有Csp 3 的立体控制合成。 sup>立体异构体。我们希望这些配体设计原理将广泛地为立体特异性Csp 3 交叉偶联的实用方法提供继续的探索。

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