Zhao Kuo, Knowles Robert R
Department of Chemistry, Princeton University, Princeton, New Jersey 08544, United States.
J Am Chem Soc. 2022 Jan 12;144(1):137-144. doi: 10.1021/jacs.1c11681. Epub 2021 Dec 30.
A light-driven method for the contra-thermodynamic positional isomerization of olefins is described. In this work, stepwise PCET activation of a more substituted and more thermodynamically stable olefin substrate is mediated by an excited-state oxidant and a Brønsted base to afford an allylic radical that is captured by a Cr(II) cocatalyst to furnish an allylchromium(III) intermediate. protodemetalation of this allylchromium complex by methanol is highly regioselective and affords an isomerized and less thermodynamically stable alkene product. The higher oxidation potential of the less substituted olefin isomer renders it inert to further oxidation by the excited-state oxidant, enabling it to accumulate in solution over the course of the reaction. A broad range of isopropylidene substrates are accommodated, including enol ethers, enamides, styrenes, 1,3-dienes, and tetrasubstituted alkyl olefins. Mechanistic investigations of the protodemetalation step are also presented.
描述了一种用于烯烃反热力学位置异构化的光驱动方法。在这项工作中,更取代且热力学更稳定的烯烃底物的逐步质子耦合电子转移(PCET)活化由激发态氧化剂和布朗斯特碱介导,以产生烯丙基自由基,该自由基被Cr(II)助催化剂捕获以提供烯丙基铬(III)中间体。甲醇对该烯丙基铬配合物的质子脱金属化具有高度区域选择性,并产生异构化且热力学稳定性较低的烯烃产物。取代较少的烯烃异构体的较高氧化电位使其对激发态氧化剂的进一步氧化呈惰性,从而使其能够在反应过程中在溶液中积累。该方法适用于广泛的异亚丙基底物,包括烯醇醚、烯酰胺、苯乙烯、1,3 - 二烯和四取代烷基烯烃。还介绍了质子脱金属化步骤的机理研究。