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Highly-chemoselective step-down reduction of carboxylic acids to aromatic hydrocarbons via palladium catalysis

机译:通过钯催化将羧酸高度化学选择性地还原为芳烃

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摘要

Aryl carboxylic acids are among the most abundant substrates in chemical synthesis and represent a perfect example of a traceless directing group that is central to many processes in the preparation of pharmaceuticals, natural products and polymers. Herein, we describe a highly selective method for the direct step-down reduction of carboxylic acids to arenes, proceeding via well-defined Pd(0)/(ii) catalytic cycle. The method shows a remarkably broad substrate scope, enabling to direct the classical acyl reduction towards selective decarbonylation by a redox-neutral mechanism. The utility of this reaction is highlighted in the direct defunctionalization of pharmaceuticals and natural products, and further emphasized in a range of traceless processes using removable carboxylic acids under mild, redox-neutral conditions orthogonal to protodecarboxylation. Extensive DFT computations were conducted to demonstrate preferred selectivity for the reversible oxidative addition and indicated that a versatile hydrogen atom transfer (HAT) pathway is operable.
机译:芳基羧酸是化学合成中最丰富的底物之一,代表了无痕导向基团的完美实例,该基团对制备药物,天然产物和聚合物的许多过程至关重要。在这里,我们描述了一种通过直接定义的Pd(0)/(ii)催化循环直接将羧酸直接降级为芳烃的高度选择性方法。该方法显示出极大的底物范围,能够通过氧化还原中性机理将经典的酰基还原反应导向选择性脱羰反应。该反应的实用性在药物和天然产物的直接去官能化中得到了强调,在使用可脱除的羧酸在正交于原脱羧化的温和,氧化还原中性条件下进行的一系列无痕方法中也得到了进一步强调。进行了广泛的DFT计算,以证明可逆氧化加成的优选选择性,并表明通用的氢原子转移(HAT)途径是可行的。

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