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Catalytic Synthesis of N-Heterocycles via Direct C(sp3)-H Amination Using an Air-Stable Iron(III) Species with a Redox-Active Ligand.


ABSTRACT: Coordination of FeCl3 to the redox-active pyridine-aminophenol ligand NNOH2 in the presence of base and under aerobic conditions generates FeCl2(NNOISQ) (1), featuring high-spin FeIII and an NNOISQ radical ligand. The complex has an overall S = 2 spin state, as deduced from experimental and computational data. The ligand-centered radical couples antiferromagnetically with the Fe center. Readily available, well-defined, and air-stable 1 catalyzes the challenging intramolecular direct C(sp3)-H amination of unactivated organic azides to generate a range of saturated N-heterocycles with the highest turnover number (TON) (1 mol% of 1, 12 h, TON = 62; 0.1 mol% of 1, 7 days, TON = 620) reported to date. The catalyst is easily recycled without noticeable loss of catalytic activity. A detailed kinetic study for C(sp3)-H amination of 1-azido-4-phenylbutane (S1) revealed zero order in the azide substrate and first order in both the catalyst and Boc2O. A cationic iron complex, generated from the neutral precatalyst upon reaction with Boc2O, is proposed as the catalytically active species.

SUBMITTER: Bagh B 

PROVIDER: S-EPMC5391503 | biostudies-literature | 2017 Apr

REPOSITORIES: biostudies-literature

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Catalytic Synthesis of N-Heterocycles via Direct C(sp<sup>3</sup>)-H Amination Using an Air-Stable Iron(III) Species with a Redox-Active Ligand.

Bagh Bidraha B   Broere Daniël L J DLJ   Sinha Vivek V   Kuijpers Petrus F PF   van Leest Nicolaas P NP   de Bruin Bas B   Demeshko Serhiy S   Siegler Maxime A MA   van der Vlugt Jarl Ivar JI  

Journal of the American Chemical Society 20170328 14


Coordination of FeCl<sub>3</sub> to the redox-active pyridine-aminophenol ligand NNO<sup>H2</sup> in the presence of base and under aerobic conditions generates FeCl<sub>2</sub>(NNO<sup>ISQ</sup>) (1), featuring high-spin Fe<sup>III</sup> and an NNO<sup>ISQ</sup> radical ligand. The complex has an overall S = 2 spin state, as deduced from experimental and computational data. The ligand-centered radical couples antiferromagnetically with the Fe center. Readily available, well-defined, and air-sta  ...[more]

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