| Literature DB >> 29977370 |
Keshaba N Parida1, Gulab K Pathe1, Shimon Maksymenko1, Alex M Szpilman1.
Abstract
Due to their closely matched reactivity, the coupling of two dissimilar ketone enolates to form a 1,4-diketone remains a challenge in organic synthesis. We herein report that umpolung of a ketone trimethylsilyl enol ether (1 equiv) to form a discrete enolonium species, followed by addition of as little as 1.2-1.4 equivalents of a second trimethylsilyl enol ether, provides an attractive solution to this problem. A wide array of enolates may be used to form the 1,4-diketone products in 38 to 74% yield. Due to the use of two TMS enol ethers as precursors, an optimization of the cross-coupling should include investigating the order of addition.Entities:
Keywords: 1,4-diketones; enolates; enolonium species; hypervalent iodine; ketones; umpolung
Year: 2018 PMID: 29977370 PMCID: PMC6009205 DOI: 10.3762/bjoc.14.84
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Scheme 1Oxidative intermolecular cross-coupling of dissimilar enolates.
Scheme 2Scope of the homo- and heterocoupling of enolates. The purple bond indicates the bond formed. The blue-colored fragments indicate the first TMS enol ether used to produce the electrophilic enolonium species 4 and the red fragments indicate the second TMS enol ether used as nucleophile 5. All yields are isolated yields.
Scheme 3Study of diastereoselectivity of the cross-coupling reaction.