College of Chemistry and Material Science, Shandong Agricultural University, Daizong Road No. 61, Tai'an 271018, Shandong, China.
Org Biomol Chem. 2022 Feb 23;20(8):1680-1689. doi: 10.1039/d1ob02168k.
Direct metal-free deoxygenation of highly active allylic alcohols catalyzed by a Brønsted acid was achieved, which avoids tedious reaction steps and eliminates metal contamination. By examining a series of Brønsted acids, alcohols, reaction temperatures and so on, up to 94% yield was obtained with 10 mol% TsOH·HO as the catalyst and 2 equiv. of -methylbenzyl alcohol as the reductant at 80 °C for 2 h. The system was mainly suitable for aromatic allylic alcohols, and the yield was excellent as determined gram-scale synthesis. The main product was double bond near the side of a more electron-rich aryl group when allylic alcohols featuring different substituents at the 1 and 3 positions were used as the substrates. Deuterium-labelled experiments clearly demonstrated that the hydrogen source was the methylene of -methylbenzyl alcohol and other control experiments indicated the existence of two ether intermediates. Interestingly, hydrogen transfer of allylic benzyl ether is a key process, but kinetic isotopic effect studies (/ = 1.28) showed that the C-H bond cleavage was not the rate-determining step. A possible mechanism involving carbocations, ether intermediates and hydrogen transfer is proposed.
通过布朗斯特酸催化,实现了高活性烯丙醇的直接无金属脱氧,避免了繁琐的反应步骤和金属污染。通过考察一系列布朗斯特酸、醇、反应温度等因素,在以 10 mol% TsOH·HO 为催化剂和 2 当量的 -甲基苯甲醇为还原剂,在 80°C 下反应 2 小时的条件下,最高可获得 94%的产率。该体系主要适用于芳香族烯丙醇,克级合成的产率也非常优异。当 1 位和 3 位取代基不同的烯丙醇作为底物时,主要产物是双键靠近富电子芳基的一侧。氘标记实验清楚地表明,氢源是 -甲基苯甲醇的亚甲基,其他控制实验表明存在两种醚中间体。有趣的是,烯丙基苄基醚的氢转移是一个关键过程,但动力学同位素效应研究(/ = 1.28)表明 C-H 键的断裂不是决速步骤。提出了一种涉及碳阳离子、醚中间体和氢转移的可能机制。