| Literature DB >> 26841358 |
Yujiro Hayashi1,2, Takasuke Mukaiyama3, Meryem Benohoud4, Nishant R Gupta4, Tsuyoshi Ono3, Shunsuke Toda3.
Abstract
Organocatalyzed Michael, Mannich, and aldol reactions of aldehydes or ketones, as nucleophiles, have triggered several discussions regarding their reaction mechanism. H2 (18) O has been utilized to determine if the reaction proceeds through an enamine or enol mechanism by monitoring the ratio of (18) O incorporated into the final product. In this communication, we describe the risk of H2 (18) O as an evaluation tool for this mechanistic investigation. We have demonstrated that exchange of (16) O/(18) O occurs in the aldehyde or ketone starting material, caused by the presence of H2 (18) O and amine catalysts, before the Michael, Mannich, and aldol reactions proceed. Because the newly generated (18) O starting aldehydes or ketones and (16) O water affect the incorporation ratio of (18) O in the final product, the use of H2 (18) O would not be appropriate to distinguish the mechanism of these organocatalyzed reactions.Entities:
Keywords: asymmetric synthesis; enamines; enols; organocatalyst; reaction mechanisms
Year: 2016 PMID: 26841358 DOI: 10.1002/chem.201600280
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236