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Gold-Catalyzed Oxidative Coupling of Alkynes toward the Synthesis of Cyclic Conjugated Diynes

机译:金催化炔烃氧化偶联制备环状共轭二炔。

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摘要

A gold-catalyzed oxidative coupling of alkynes was developed as an efficient approach for the synthesis of challenging cyclic conjugated diynes (CCD). Compared to the classical copper-promoted oxidative coupling reaction of alkynes, this gold-catalyzed process exhibits a faster reaction rate due to the rapid reductive elimination from the Au(III) intermediate. This unique reactivity thus allowed a challenging diyne macrocyclization to take place in high efficiency. Condition screening revealed a [(n-Bu)4N]+[Cl-Au-Cl] salt as the optimal pre-catalyst. Macrocycles with ring size between 13 to 28 atoms were prepared in moderate to good yields, which highlighted the broad substrate scope of this new strategy. Furthermore, the synthetic utilities of the cyclic conjugated diynes for copper-free click chemistry have been demonstrated, which showcased the potential application of this strategy in biological systems.
机译:炔烃的金催化氧化偶联被开发为合成具有挑战性的环状共轭二炔(CCD)的有效方法。与传统的炔烃的铜促进的氧化偶联反应相比,由于金(III)中间体的快速还原消除,该金催化的方法显示出更快的反应速率。因此,这种独特的反应性使得高效的挑战性二炔大环化发生。条件筛选显示[(n-Bu)4N] + [Cl-Au-Cl] -盐是最佳的预催化剂。制备具有中等至良好产率的环大小在13至28个原子之间的大环化合物,这突出了该新策略的广泛底物范围。此外,已经证明了环状共轭二炔在无铜点击化学中的合成效用,证明了该策略在生物系统中的潜在应用。

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