Pd catalyzed couplings of “superactive esters” and terminal alkynes: Application to flavones and γ-benzopyranones construction

IF 5.062
Dandan Yang, Zhenhua Wang, Xiu Wang, Huaming Sun, Zunyuan Xie, Juan Fan, Guofang Zhang, Weiqiang Zhang, Ziwei Gao
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引用次数: 11

Abstract

Lewis base, N-methylmorpholine (NMM) accelerated Pd-catalyzed Sonogashira coupling of steric hindered super active esters, 1a–1e, and terminal alkynes. This approach provided an efficient synthetic protocol for a broad array of acylated o-alkynoylphenols compounds, 3a–3e, under moderate conditions. The mechanistic study clearly demonstrated that NNM stabilized the catalytic palladium species, and accelerated the leaving of triazine moiety during the catalytic cycle of the cross-coupling reactions. In addition, piperazine was found to efficiently catalyze the 6-endo cyclization of acylated o-alkynoylphenols, which achieved the diversity oriented synthesis of γ-benzopyranones, 4aa–4eg, with 93–99% yields.

Abstract Image

Pd催化“超活性酯”与末端炔的偶联:在黄酮和γ-苯并吡喃酮构建中的应用
Lewis碱,n -甲基啉(NMM)加速pd催化的位阻超活性酯,1a-1e和末端炔的Sonogashira偶联。该方法在中等条件下为广泛的酰基化o-炔基酚化合物3a-3e提供了一种高效的合成方案。机理研究清楚地表明,在交叉偶联反应的催化循环中,NNM稳定了催化钯的种类,并加速了三嗪部分的离开。此外,哌嗪还能有效催化酰基化邻炔诺基苯酚的6-内环化,从而实现了γ-苯并吡喃酮4aa-4eg的多样性合成,收率为93-99%。
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2.8 months
期刊介绍: The Journal of Molecular Catalysis A: Chemical publishes original, rigorous, and scholarly full papers that examine the molecular and atomic aspects of catalytic activation and reaction mechanisms in homogeneous catalysis, heterogeneous catalysis (including supported organometallic catalysis), and computational catalysis.
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