| Literature DB >> 28682073 |
Eric C Hansen1, Changfeng Li2, Sihang Yang2, Dylan Pedro1, Daniel J Weix3.
Abstract
Despite their importance, the synthesis of alkylated heterocycles from the cross-coupling of Lewis basic nitrogen heteroaryl halides with alkyl halides remains a challenge. We report here a general solution to this challenge enabled by a new collection of ligands based around 2-pyridyl-N-cyanocarboxamidine and 2-pyridylcarboxamidine cores. Both primary and secondary alkyl halides can be coupled with 2-, 3-, and 4-pyridyl halides as well as other more complex heterocycles in generally good yields (41 examples, 69% ave yield).Entities:
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Year: 2017 PMID: 28682073 PMCID: PMC5539790 DOI: 10.1021/acs.joc.7b01334
Source DB: PubMed Journal: J Org Chem ISSN: 0022-3263 Impact factor: 4.354
Scheme 1General Heteroaryl Halide Alkylation
Coupling of 4-Bromopyridine Derivatives
(3-Chloropropyl)benzene (8b) was used instead of 8a.
Reaction run at 80 °C.
2.0 equiv of alkyl halide was used.
7 mol % of NiCl2(dme) and ligand were used.
NiI2 (5 mol %) was used instead of NiCl2-dme.
NaI was omitted.
Coupling of 3-Bromopyridine Derivatives
7 mol % NiCl2(dme) and ligand were used.
2.0 equiv of alkyl halide was used.
NaI was omitted.
2 equiv of alkyl halide was used at 80 °C.
Coupling of 2-Bromopyridine Derivatives
NiI2 was used in place of NiCl2(dme).
2 equiv of 8a was used.
(3-Chloropropyl)benzene (8b) was used instead of 8a, and the reaction temperature was 80 °C.
7 mol % of NiCl2(dme) and ligand were used.
Reaction run at 40 °C.
Couplings with Functionalized Alkyl Halides
NiI2 was used in place of NiCl2(dme).
2 equiv of alkyl halide was used.
Commercial chloromethyl pivalate was used.
1.5 equiv of alkyl halide was used.