Ikawa Takashi
Graduate School of Pharmaceutical Sciences, Osaka University.
Yakugaku Zasshi. 2014;134(12):1309-17. doi: 10.1248/yakushi.14-00192.
Phenols are abundant in nature and diverse phenols are readily available commercially at low cost. Thus, phenols can be used as the raw materials for the synthesis of valuable multisubstituted aromatic compounds by the direct activation of phenolic hydroxyl groups (C-O bond activation), followed by substitutions with other substituents. Although the derivatization of phenolic hydroxyl groups to sulfonates, such as triflates, nonaflates, tosylates and mesylates, followed by the transition-metal-catalyzed coupling reactions has been extensively investigated for this purpose, the direct C-O bond activation of phenols for subsequent functional group transformation has been a long-standing challenge in modern organic synthesis. In this review, I have summarized my recent studies on the formal direct C-O bond activation of phenols using nonafluorobutanesulfonyl fluoride (NfF) for the synthesis of multisubstituted aromatics. I have focused on the dual use of NfF, a less expensive commercially available reagent, including the tentative formation of highly reactive nonaflates from phenols and the use of the liberated fluoride ion as a nucleophile to promote the reactions of nonaflates. The following four topics are discussed: 1) palladium-catalyzed coupling reactions of phenols, 2) novel preparation of benzynes from 2-silylphenols, 3) synthesis of fluorinated aromatic compounds via the formation of benzynes, and 4) Hiyama coupling of (tert-butyldimethylsilyl)arenes activated by internal phenolic hydroxyl groups.
酚类在自然界中含量丰富,多种酚类可低成本从商业渠道轻松获取。因此,酚类可作为合成有价值的多取代芳香族化合物的原料,通过直接活化酚羟基(C-O键活化),随后用其他取代基进行取代反应。尽管为此目的已广泛研究了将酚羟基衍生为磺酸盐,如三氟甲磺酸盐、九氟丁磺酸盐、对甲苯磺酸盐和甲磺酸盐,然后进行过渡金属催化的偶联反应,但酚类的直接C-O键活化以进行后续官能团转化一直是现代有机合成中的长期挑战。在这篇综述中,我总结了我最近关于使用九氟丁烷磺酰氟(NfF)对酚类进行形式上的直接C-O键活化以合成多取代芳烃的研究。我重点关注了NfF这种较便宜的市售试剂的双重用途,包括从酚类初步形成高反应性的九氟丁磺酸盐,以及使用释放出的氟离子作为亲核试剂来促进九氟丁磺酸盐的反应。本文讨论了以下四个主题:1)酚类的钯催化偶联反应;2)由2-硅基酚类新颖制备苯炔;3)通过苯炔的形成合成氟化芳香族化合物;4)由内部酚羟基活化的(叔丁基二甲基硅基)芳烃的日山偶联反应。