Gold-Catalyzed Organometallic Cross-Coupling

Kai Liu, Nian Li, Yunyun Ning, Chengjian Zhu, Jin Xie
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Abstract

Synthesis of biaryls by Suzuki-Miyaura or Hiyama coupling represents the-state-of-art in carbon-carbon bond formation, in which the coupling occurs between a nucleophile (Arδ-: arylboronates or arylsilanes) and an electrophile (Arδ+: arylhalides). The intrinsic functional group limitations in these reactions stem from the high catalytic reactivity of palladium and nickel catalysts toward halogen, boronate and base-sensitive substituents. We report a general dinuclear gold-catalyzed organometallic cross-coupling of arylboronates and arylsilanes without external base for the synthesis, with excellent functional group tolerance of asymmetric biaryls. Both coupling partners are readily available, bench-stable and non-toxic. A broad array of (pseudo)halogenated and borylated coupling partners can be successfully applied to this site-specific biaryl coupling. The biocompatibility of gold expedites the synthesis of biaryl pharmacophores avoiding the involvement of palladium residues.
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金催化有机金属交叉偶联
通过Suzuki-Miyaura或Hiyama偶联合成双芳基代表了碳碳键形成的最新技术,其中偶联发生在亲核试剂(Arδ-:芳基硼酸盐或芳基硅烷)和亲电试剂(Arδ+:芳基卤化物)之间。这些反应的内在官能团限制源于钯和镍催化剂对卤素、硼和碱敏感取代基的高催化反应活性。我们报道了一种通用的双核金催化的芳基硼酸盐和芳基硅烷的有机金属交叉偶联合成,不需要外部碱,对不对称双芳基具有良好的官能团耐受性。两种耦合伙伴都是现成的,工作台稳定且无毒。广泛的(伪)卤化和硼化偶联伙伴可以成功地应用于这种位点特异性联芳基偶联。金的生物相容性加速了联芳基药物载体的合成,避免了钯残基的参与。
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