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催化生成的 Meerwein's Salt 型氧鎓离子促进与甲醇的 Friedel-Crafts C(sp)-H 甲基化反应。

Catalytically Generated Meerwein's Salt-Type Oxonium Ions for Friedel-Crafts C(sp)-H Methylation with Methanol.

机构信息

Institut für Chemie, Technische Universität Berlin, Strasse des 17. Juni 115, 10623 Berlin, Germany.

出版信息

J Am Chem Soc. 2023 Feb 15;145(6):3795-3801. doi: 10.1021/jacs.2c13341. Epub 2023 Feb 1.

Abstract

A catalytic protocol for a Friedel-Crafts-type direct C(sp)-H methylation of various arenes with methanol is disclosed. The reaction is initiated by counteranion-stabilized silylium or arenium ions, which form Meerwein's salt-like oxonium ions with methanol as the active methylating agents. The silylated methyloxonium ions are stronger electrophiles than their protonated congeners, allowing the Friedel-Crafts alkylation to proceed more efficiently and at a lower reaction temperature. The regeneration of these superelectrophiles within the catalytic cycle is accomplished by the addition of a tetraorganosilane additive, i.e., trimethyl(phenyl)silane or tetraethylsilane, that releases a silylium ion through protodesilylation by the Brønsted acidic Wheland intermediate, thereby acting as a productive "proton-into-silylium ion" generator. By this method, even the C-H methylation of electronically deactivated aryl halides with methanol is achieved. The protocol is also applicable to nonactivated primary as well as π-activated benzylic alcohols. Dialkyl ethers are also competent alkylating agents in the presence of the quaternary phenylsilane additive.

摘要

本文公开了一种用甲醇对各种芳基进行 Friedel-Crafts 型直接 C(sp)-H 甲基化的催化方案。该反应由抗衡阴离子稳定的硅鎓或芳鎓离子引发,它们与甲醇形成类似于 Meerwein 盐的氧鎓离子,作为活性甲基化试剂。硅烷基化的甲氧基鎓离子比其质子化的同类物具有更强的亲电性,使得 Friedel-Crafts 烷基化反应能够更有效地进行,并在更低的反应温度下进行。在催化循环中,通过添加四有机硅烷添加剂,即三甲基(苯基)硅烷或四乙硅烷,来实现这些超亲电试剂的再生,该添加剂通过布朗斯特酸性 Wheland 中间体的质子脱硅作用释放硅鎓离子,从而充当有效的“质子到硅鎓离子”发生器。通过这种方法,甚至可以用甲醇实现电子去活化的芳基卤化物的 C-H 甲基化。该方案也适用于非活化的伯醇以及π-活化的苄醇。在四苯基硅烷添加剂存在下,二烷基醚也是有效的烷基化试剂。

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