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Phase Separation As a Strategy Toward Controlling Dilution Effects in Macrocyclic Glaser-Hay Couplings

机译:相分离是一种控制大环格拉斯-哈伊耦合系统中稀释效应的策略

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摘要

Macrocycles are abundant in numerous chemical applications, however the traditional strategy for the preparation of these compounds remains cumbersome and environmentally damaging; involving tedious reaction set-ups and extremely dilute reaction media. The development of a macrocyclization strategy conducted at high concentrations is described which exploits phase separation of the catalyst and substrate, as a strategy to control dilution effects. Sequestering a copper catalyst in a highly polar and/or hydrophilic phase can be achieved using a hydrophilic ligand, T-PEG_(1900), a PEGylated TMEDA derivative. Similarly, phase separation is possible when suitable copper complexes are soluble in PEG_(400), a green and efficient solvent which can be utilized in biphasic mixtures for promoting macrocyclization at high concentrations. The latter phase separation technique can be exploited for the synthesis of a wide range of industrially relevant macrocycles with varying ring sizes and functional groups.
机译:大环化合物在许多化学应用中是丰富的,但是制备这些化合物的传统策略仍然麻烦且对环境有害。涉及乏味的反应装置和极稀的反应介质。描述了在高浓度下进行的大环化策略的发展,该策略利用了催化剂和底物的相分离作为控制稀释效果的策略。可以使用亲水性配体T-PEG_(1900)(一种聚乙二醇化的TMEDA衍生物)将铜催化剂隔离在高极性和/或亲水性相中。类似地,当合适的铜络合物可溶于PEG_(400)时,可以进行相分离。PEG_(400)是一种绿色高效的溶剂,可用于双相混合物中以促进高浓度下的大环化。后一相分离技术可用于合成各种具有不同环尺寸和官能团的工业上相关的大环化合物。

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  • 来源
    《Journal of the American Chemical Society》 |2011年第49期|p.19976-19981|共6页
  • 作者单位

    Departement de Chimie, Centre for Green Chemistry and Catalysis, Universite de Montreal, CP 6128 Station Downtown, Montreal, Quebec H3C 3J7 Canada;

    Departement de Chimie, Centre for Green Chemistry and Catalysis, Universite de Montreal, CP 6128 Station Downtown, Montreal, Quebec H3C 3J7 Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 03:14:35

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