| Literature DB >> 35211265 |
Ming-Shang Liu1, Hai-Wu Du1, Wei Shu1.
Abstract
Selective functionalization of allylic C-H bonds into other chemical bonds is among the most straightforward and attractive, yet challenging transformations. Herein, a transition-metal-free protocol for direct allylic C-H nitrogenation, oxygenation, and carbonation of alkenes by thianthrenation was developed. This operationally simple protocol allows for the unified allylic C-H amination, esterification, etherification, and arylation of vinyl thianthrenium salts. Notably, the reaction furnishes multialkyl substituted allylic amines, ammonium salts, sulfonyl amides, esters, and ethers in good yields. The reaction proceeds under mild conditions with excellent functional group tolerance and could be applied to late-stage allylation of natural products, drug molecules and peptides with excellent chemoselectivity. This journal is © The Royal Society of Chemistry.Entities:
Year: 2021 PMID: 35211265 PMCID: PMC8790768 DOI: 10.1039/d1sc06577g
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Scheme 1Impetus for metal-free allylic C–H functionalizations using thianthrenium salts.
Condition development of the reactiona
|
| ||
|---|---|---|
| Entries | Variations as shown | Yield of 3a |
| 1 | None | 92% (91%) |
| 2 | Cs2CO3 as base | 85% |
| 3 | K3PO4 as base | 72% |
| 4 | Li2CO3 as base | N.D. |
| 5 | DCE as solvent | 88% |
| 6 | CH3CN as solvent | 82% |
| 7 | Acetone as solvent | 69% |
| 8 | THF as solvent | 47% |
| 9 | Toluene as solvent | 81% |
The reaction was conducted using 1a (0.1 mmol) and 2a (0.12 mmol) at room temperature for 24 h. Yield was determined by 1H NMR of the crude mixture using mesitylene as the internal standard.
Isolated yield after flash chromatography.
Scope of the metal-free allylic C–H functionalizations using vinyl thianthrenium saltsa
|
|
The reaction was conducted on a 0.2 mmol scale. Standard conditions, see Table 1 for details.
PMDTA (pentamethyldiethylenetriamine, 1.0 equiv.) was used as the base with a nucleophile (2.0 equiv.) in DCE (0.05 M).
4.0 mmol scale reaction.
Potassium thioacetate and H2O (0.2 μL) were used.
The reaction was conducted using amine (2.0 equiv.) and H2O (0.2 μL).
KOH (1.0 equiv.) was used as the base.
Scheme 2One-pot synthesis and control experiments.
Scheme 3Proposed mechanism for the reaction.