| Literature DB >> 29461064 |
Bo Qu1, Hari P R Mangunuru1, Sergei Tcyrulnikov2, Daniel Rivalti1, Olga V Zatolochnaya1, Dmitry Kurouski1, Suttipol Radomkit1, Soumik Biswas1, Shuklendu Karyakarte1, Keith R Fandrick1, Joshua D Sieber1, Sonia Rodriguez1, Jean-Nicolas Desrosiers1, Nizar Haddad1, Keith McKellop1, Scott Pennino1, Heewon Lee1, Nathan K Yee1, Jinhua J Song1, Marisa C Kozlowski2, Chris H Senanayake1.
Abstract
Enantioselective synthesis of α-aryl and α-heteroaryl piperidines is reported. The key step is an iridium-catalyzed asymmetric hydrogenation of substituted N-benzylpyridinium salts. High levels of enantioselectivity up to 99.3:0.7 er were obtained for a range of α-heteroaryl piperidines. DFT calculations support an outersphere dissociative mechanism for the pyridinium reduction. Notably, initial protonation of the final enamine intermediate determines the stereochemical outcome of the transformation rather than hydride reduction of the resultant iminium intermediate.Entities:
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Year: 2018 PMID: 29461064 PMCID: PMC5835364 DOI: 10.1021/acs.orglett.8b00067
Source DB: PubMed Journal: Org Lett ISSN: 1523-7052 Impact factor: 6.005