| Literature DB >> 23766783 |
Rudy Lhermet1, Muriel Durandetti, Jacques Maddaluno.
Abstract
The efficiency of the intramolecular carbonickelation of substituted allylic ethers and amines has been studied to evaluate the influence of the groups borne by the double bond on this cyclization. The results show that when this reaction takes place, it affords only the 5-exo-trig cyclization products, viz. dihydrobenzofurans or indoles. Depending on the tethered heteroatom (O or N), the outcome of the cyclization differs. While allylic ethers are relatively poor substrates that undergo a side elimination and need an intracyclic double bond to proceed, allylic amines react well and afford indoline and indole derivatives. Finally, the synthesis of the trinuclear ACE core of a morphine-like skeleton was achieved by using NiBr2bipy catalysis.Entities:
Keywords: Heck-type reaction; alkenes; carbometallation; carbonickelation; cyclization; nickel catalysis
Year: 2013 PMID: 23766783 PMCID: PMC3678504 DOI: 10.3762/bjoc.9.81
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Scheme 1Synthesis of substrates 1a–c.
Carbonickelation of compound 1a–c.
| entry | ArI | Z | ratio |
| 1 | O | ε/ε/ε/100 (26%b) | |
| 2 | N-Boc | 0/50/50/0 (60%) | |
| 3 | N-Ms | 61/26/13/0 (60%c) | |
| 4d | N-Ms | 40/22/38/0 (69%c) | |
aDetermined by NMR, isolated yield between brackets; btrace amounts of 2a, 2a’ and 3a were identified as well as several other byproducts; cNMR yield with respect to an internal standard, based on initial aryl iodide 1c; dreaction run with 1 equiv of NiBr2bipy.
Scheme 2Synthesis of substrates 5a, 5c, 6a and 6c.
Scheme 3Cyclization of substrate 5a and 5c.
Scheme 4Proposed mechanism involving π-allylnickel formation.
Scheme 5Cyclization of substrate 6a and 6c.
Scheme 6Synthesis and carbometalations of 13.