Xiao Xiao, Wengryniuk Sarah E
The Education Ministry Key Lab of Resource Chemistry and Shanghai Key Laboratory of Rare Earth Functional Materials, Shanghai Normal University, Shanghai 200234, P. R. of China.
Department of Chemistry, Temple University, 1901 North 13 Street, Philadelphia, PA, 19122, USA.
Synlett. 2021;32(8):752-762. doi: 10.1055/s-0037-1610760. Epub 2021 Jan 14.
-Quinones are valuable molecular frameworks with diverse applications across biology, materials, organic synthesis, catalysis, and coordination chemistry. Despite their broad utility, their synthesis remains challenging, in particular via the direct oxidation of readily accessible phenols, due to the need to affect regioselective ortho oxidation coupled with the sensitivity of the resulting -quinone products. The perspective looks at the emergence of I(V) hypervalent iodine reagents as an effective class of oxidants for regioselective -quinone synthesis. The application of these reagents in regioselective phenol oxidation to both -quinones and -quinols will be discussed, including a recent report from our laboratory on the first method for the oxidation of electron-deficient phenols using a novel nitrogen-ligated I(V) reagent. Also included are select examples of total syntheses utilizing this methodology as well as recent advancements in chiral I(V) reagent design for asymmetric phenol dearomatization.
醌类是具有重要价值的分子骨架,在生物学、材料科学、有机合成、催化以及配位化学等领域有着广泛应用。尽管其用途广泛,但醌类的合成仍然具有挑战性,特别是通过对易于获取的酚类进行直接氧化来合成时,因为需要实现区域选择性邻位氧化,同时生成的醌类产物又具有敏感性。本文展望了高价碘(V)试剂作为一类用于区域选择性醌类合成的有效氧化剂的出现。将讨论这些试剂在区域选择性酚类氧化生成醌类和醌醇方面的应用,包括我们实验室最近关于使用新型氮配位高价碘(V)试剂氧化缺电子酚类的首个方法的报告。还包括利用该方法进行全合成的精选实例,以及用于不对称酚类去芳构化的手性高价碘(V)试剂设计的最新进展。