Wu Jingze, Kozlowski Marisa C
Department of Chemistry, Roy and Diana Vagelos Laboratories, University of Pennsylvania, Philadelphia, Pennsylvania 19104, United States.
ACS Catal. 2022 Jun 3;12(11):6532-6549. doi: 10.1021/acscatal.2c00318. Epub 2022 May 18.
Phenols and their derivatives are the elementary building blocks for several classes of complex molecules that play essential roles in biological systems. Nature has devised methods to selectively couple phenolic compounds, and many efforts have been undertaken by chemists to mimic such coupling processes. A range of mechanisms can be involved and with well-studied catalysts, reaction outcomes in phenol-phenol oxidative coupling reactions can be predicted with a good level of fidelity. However, reactions with catalysts that have not been studied or that do not behave similarly to known catalysts can be hard to predict and control. This Perspective provides an overview of catalytic methods for the oxidative coupling of phenols, focusing on the last 10 years, and summarizes current challenges.
酚类及其衍生物是几类复杂分子的基本组成部分,这些复杂分子在生物系统中发挥着重要作用。自然界已经设计出选择性偶联酚类化合物的方法,并且化学家们已经做出了许多努力来模拟这种偶联过程。这一过程可能涉及一系列机制,并且对于经过充分研究的催化剂而言,苯酚-苯酚氧化偶联反应的结果能够以较高的准确度进行预测。然而,使用尚未研究过的催化剂或者行为与已知催化剂不同的催化剂进行的反应可能难以预测和控制。本综述概述了酚类氧化偶联的催化方法,重点关注过去十年,并总结了当前面临的挑战。