Institut für Organische Chemie, Johannes Gutenberg-Universität Mainz, Duesbergweg 10-14, 55128, Mainz, Germany.
Evonik Performance Materials GmbH, Marl, Germany.
Angew Chem Int Ed Engl. 2016 Sep 19;55(39):11801-5. doi: 10.1002/anie.201604321. Epub 2016 Jul 12.
The oxidative cross-coupling of aromatic substrates without the necessity of leaving groups or catalysts is described. The selective formation of partially protected nonsymmetric 2,2'-biphenols via electroorganic synthesis was accomplished with a high yield of isolated product. Since electric current is employed as the terminal oxidant, the reaction is reagent-free; no reagent waste is generated as only electrons are involved. The reaction is conducted in an undivided cell, and is suitable for scale-up and inherently safe. The implementation of O-silyl-protected phenols in this transformation results in both significantly enhanced yields and higher selectivity for the desired nonsymmetric 2,2'-biphenols. The use of a bulky silyl group to block one hydroxyl moiety makes the final product less prone to oxidation. Furthermore, the partially silyl-protected 2,2'-biphenols are versatile building blocks that usually require tedious or low-yielding synthetic pathways. Additionally, this strategy facilitates a large variety of new substrate combinations for oxidative cross-coupling reactions.
描述了一种无需离去基团或催化剂即可进行芳基底物氧化交叉偶联的方法。通过电化学合成,高收率地获得了部分保护的非对称 2,2'-联苯酚的分离产物,实现了选择性形成。由于电流被用作末端氧化剂,因此该反应无需试剂;由于只涉及电子,因此不会产生试剂废物。该反应在不分流池中进行,适合放大规模,并且具有固有安全性。在这种转化中,O-硅基保护的苯酚的实施不仅显著提高了产率,而且对所需的非对称 2,2'-联苯酚具有更高的选择性。使用大体积的硅基基团来封闭一个羟基部分使得最终产物不易氧化。此外,部分硅基保护的 2,2'-联苯酚是多功能的构建块,通常需要繁琐或产率低的合成途径。此外,这种策略为氧化交叉偶联反应提供了大量新的底物组合。