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Efficient Lewis Acid Ionic Liquid-Catalyzed Synthesis of the Key Intermediate of Coenzyme Q10 under Microwave Irradiation

机译:微波辐射下路易斯酸离子液体高效合成辅酶Q10关键中间体

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An efficient synthesis of a valuable intermediate of coenzyme Q10 by microwave-assisted Lewis acidic ionic liquid (IL)-catalyzed Friedel-Crafts alkylation is reported. The acidity of six [Etpy]BF4-based ionic liquids was characterized by means of the FT-IR technique using acetonitrile as a molecular probe. The catalytic activities of these ionic liquids were correlated with their Lewis acidity. With increasing Lewis acid strength of the ionic liquids, their catalytic activity in the Friedel-Crafts reaction increased, except for [Etpy]BF4-AlCl3. The effects of the reaction system, the molar fraction of Lewis acid in the Lewis acid ILs and heating techniques were also investigated. Among the six Lewis acid ionic liquids tested [Etpy]BF4-ZnCl2 showed the best catalytic activity, with a yield of 89% after a very short reaction time (150 seconds). This procedure has the advantages of higher efficiency, better reusability of ILs, energy conservation and eco-friendliness. The method has practical value for preparation of CoQ10 on an industrial scale.
机译:报道了微波辅助路易斯酸性离子液体催化的弗瑞德-克拉夫茨烷基化反应有效合成有价值的辅酶Q 10 中间体的方法。利用乙腈作为分子探针,通过FT-IR技术对六种[Etpy] BF 4 基离子液体的酸度进行了表征。这些离子液体的催化活性与其路易斯酸度相关。随着离子液体路易斯酸强度的增加,除了[Etpy] BF 4 -AlCl 3 外,它们在Friedel-Crafts反应中的催化活性也增加。还研究了反应体系,路易斯酸离子液体中路易斯酸的摩尔分数和加热技术的影响。在所测试的六种路易斯酸离子液体中,[Etpy] BF 4 -ZnCl 2 表现出最佳的催化活性,在很短的反应时间后产率为89%(150)。秒)。该程序的优点是效率更高,IL的可重用性更好,节能和生态友好。该方法对工业规模制备辅酶Q 10 具有实用价值。

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    《Molecules》 |2010年第12期|共10页
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  • 中图分类 有机化学;
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