Maity Asim, Hyun Sung-Min, Wortman Alan K, Powers David C
Department of Chemistry, Texas A&M University, 3255 TAMU, College Station, TX, 77843, USA.
Angew Chem Int Ed Engl. 2018 Jun 11;57(24):7205-7209. doi: 10.1002/anie.201804159. Epub 2018 May 9.
Hypervalent iodine(V) reagents, such as Dess-Martin periodinane (DMP) and 2-iodoxybenzoic acid (IBX), are broadly useful oxidants in chemical synthesis. Development of strategies to generate these reagents from dioxygen (O ) would immediately enable use of O as a terminal oxidant in a broad array of substrate oxidation reactions. Recently we disclosed the aerobic synthesis of I(III) reagents by intercepting reactive oxidants generated during aldehyde autoxidation. In this work, aerobic oxidation of iodobenzenes is coupled with disproportionation of the initially generated I(III) compounds to generate I(V) reagents. The aerobically generated I(V) reagents exhibit substrate oxidation chemistry analogous to that of DMP. The developed aerobic generation of I(V) has enabled the first application of I(V) intermediates in aerobic oxidation catalysis.
高价碘(V)试剂,如戴斯-马丁高碘烷(DMP)和2-碘酰基苯甲酸(IBX),是化学合成中广泛使用的氧化剂。开发从氧气(O₂)生成这些试剂的策略将立即使O₂能够在广泛的底物氧化反应中用作终端氧化剂。最近,我们通过拦截醛自氧化过程中产生的活性氧化剂,披露了I(III)试剂的有氧合成。在这项工作中,碘苯的有氧氧化与最初生成的I(III)化合物的歧化反应相结合,以生成I(V)试剂。有氧生成的I(V)试剂表现出与DMP类似的底物氧化化学性质。所开发的I(V)的有氧生成使得I(V)中间体首次应用于有氧氧化催化。