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首页> 外文期刊>Chemistry: A European journal >Generation of an aromatic amide-derived phosphane (Aphos) library by self-assisted molecular editing and applications of Aphos in room-temperature Suzuki-Miyaura reactions
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Generation of an aromatic amide-derived phosphane (Aphos) library by self-assisted molecular editing and applications of Aphos in room-temperature Suzuki-Miyaura reactions

机译:通过自辅助分子编辑生成芳族酰胺衍生的膦(Aphos)库并在室温Suzuki-Miyaura反应中应用Aphos

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摘要

Aromatic amide-derived phosphanes (Aphos) are hemilabile P,O-coordinating ligands, which, when combined with a Pd precursor, yield a promising precatalyst system for Suzuki-Miyaura cross-coupling reactions. A focused library of Aphos ligands has been constructed for structural optimization, with the target of improving catalytic efficacy. By using microwave irradiation at accurately regulated temperature, an expeditious and reproducible one-pot synthesis and screening protocol was designed and experimentally validated. The success is based on a unique self-assisted molecular editing (SAME) process in which both the substrate and the product molecules catalyze formation of the product. Thus, starting from a 4-chlorobenzamide-derived Aphos as the substrate, parallel reactions with a selected set of arylboronic acids, in the absence of an added external phosphane ligand to Pd, produced a family of structurally edited Aphos ligands. The resultant reaction mixture containing the new Aphos, the Pd species, and the base could be used for in situ screening of the Aphos efficacy in a reference Suzuki-Miyaura coupling reaction. The structures of all Aphos ligands were characterized by P-31 NMR spectroscopy and their catalytic profiles in the reference reaction were evaluated by HPLC analysis. These data allowed the identification of an efficient Aphos ligand, capable of promoting room-temperature Suzuki-Miyaura coupling of unactivated and sterically hindered aryl chlorides with arylboronic acids under mildly basic conditions.
机译:芳族酰胺衍生的膦(Aphos)是半不稳定的P,O配位配体,当与Pd前体结合时,可为铃木-宫浦的交叉偶联反应提供有希望的前催化剂体系。已经构建了Aphos配体的重点文库用于结构优化,目的是提高催化效率。通过在精确调节的温度下使用微波辐射,设计了一种快速且可重现的一锅合成和筛选方案,并进行了实验验证。成功的基础是独特的自我协助分子编辑(SAME)过程,其中底物和产物分子均催化产物的形成。因此,从4-氯苯甲酰胺衍生的Aphos作为底物开始,在不向Pd添加外部膦配体的情况下,与一组选定的芳基硼酸进行平行反应,生成了一系列结构上经过编辑的Aphos配体。所得的含有新的Aphos,Pd种类和碱的反应混合物可用于原位筛选参比Suzuki-Miyaura偶联反应中的Aphos功效。所有Aphos配体的结构均通过P-31 NMR光谱表征,并通过HPLC分析评估其在参考反应中的催化特性。这些数据允许鉴定有效的Aphos配体,其能够在温和的碱性条件下促进未活化的和空间受阻的芳基氯与芳基硼酸的室温Suzuki-Miyaura偶联。

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