| Literature DB >> 31293759 |
Chengwei Liu1, Zhi-Xin Qin2, Chong-Lei Ji2, Xin Hong2, Michal Szostak3,1.
Abstract
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.Entities:
Year: 2019 PMID: 31293759 PMCID: PMC6568276 DOI: 10.1039/c9sc00892f
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Fig. 1Transition-metal-catalyzed reduction of carboxylic acids.
Fig. 2Scope of decarbonylative reduction of carboxylic acids. Conditions: carboxylic acid (1.0 equiv.), Pd(OAc)2 (5 mol%), dppb (10 mol%), Et3SiH (1.5 equiv.), piv2O (1.5 equiv.), toluene, 160 °C, 15 h. Dppb = 1,4-bis(diphenylphosphino)butane; piv = pivaloyl. See ESI for details.†
Fig. 3Synthetic applications. Conditions: aPhI, [Ru(p-cym)Cl2]2, PCy3HBF4, K2CO3, NMP, 100 °C. bStandard conditions. cI2, NaIO4, H2SO4, 23 °C. d3-MeO-C6H4-B(OH)2, Pd2(dba)3, SPhos, K3PO4, PhMe, 100 °C. ePhCHCH2, Pd2(dba)3, Pt-Bu3HBF4, Et3N, dioxane, 23 °C. fKMnO4, Na2CO3, H2O, 120 °C.
Fig. 4DFT-calculated reaction energy profile and chemoselectivity of C–O bond activation of [Pd(dppb)]-catalyzed decarbonylative reduction of benzoic pivalic anhydride. See ESI for computational details.†