| Literature DB >> 29780496 |
Jia Cao1,2, Guoqiang Wang1, Liuzhou Gao1, Xu Cheng3, Shuhua Li1.
Abstract
A pyridine-boryl radical promoted reductive coupling reaction of aldehydes with 1,1-diarylethylenes has been established via a combination of computational and experimental studies. Density functional theory calculations and control experiments suggest that the ketyl radical from the addition of the pyridine-boryl radical to aldehydes is the key intermediate for this C-C bond formation reaction. This metal-free reductive coupling reaction features a broad substrate scope and good functional compatibility.Entities:
Year: 2018 PMID: 29780496 PMCID: PMC5933217 DOI: 10.1039/c7sc05225a
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Scheme 1Reductive coupling of carbonyl compounds with olefins.
Scheme 2Proposed mechanism for the reductive coupling of isobutyraldehyde and 1,1-diphenylethylene.
Optimization of the reaction conditions
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| Entry | Hydrogen source | Pyridines with different | Ratio [ |
| 1 | TMe-1,4-CHD | 4-CN ( | 28% : 0% |
| 2 | TMe-1,4-CHD | 4-(4-Cyanophenyl) ( |
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| 3 | TMe-1,4-CHD | 4-Ph ( | 16% : 2% |
| 4 | TMe-1,4-CHD | 4-CF3 ( | 21% : 1% |
| 5 | TMe-1,4-CHD | 3-CF3 ( | 0% |
| 6 | Et3SiH | 4-(4-Cyanophenyl) ( | 62% : 16% |
| 7 | — | 4-(4-Cyanophenyl) ( | 52% : 16% |
Reaction conditions: isobutyraldehyde (0.2 mmol), B2(pin)2 (0.2 mmol), catalyst (0.04 mmol), 1,1-diphenylethylene (0.4 mmol), H-donor (0.2 mmol), 24 hours, 120 °C, and MTBE (1 mL).
Yields were determined by 1H-NMR analysis of the crude mixture using CH2Br2 as the internal standard.
Isolated yield of 3a. TMe-1,4-CHD = 1,3,5-trimethyl-1,4-cyclohexadiene.
Substrate scope for the reductive coupling of aldehydes or ketones with 1,1-diphenylethylene
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Reaction conditions: aldehyde (0.2 mmol), B2(pin)2 (0.2 mmol), 4-(4-pyridinyl)benzonitrile (0.04 mmol), 1,1-diphenylethylene (0.4 mmol), 1,3,5-trimethyl-1,4-cyclohexadiene (0.2 mmol), MTBE (1.0 mL), 24 h, and 120 °C. Isolated yield. The diastereoselectivities (d. r.) were determined by 1H-NMR analysis of the crude mixture. Boc = tert-butoxycarbonyl.
Substrate scope for the reductive coupling of pivaldehyde with 1,1-diarylethylenes
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Reaction conditions: pivaldehyde (0.2 mmol), B2(pin)2 (0.2 mmol), 4-(4-pyridinyl)benzonitrile (0.04 mmol), 1,1-diarylethylene (0.4 mmol), 1,3,5-trimethyl-1,4-cyclohexadiene (0.2 mmol), MTBE (1.0 mL), 24 h, and 120 °C. Isolated yield. The diastereoselectivities (d. r.) were determined by 1H-NMR analysis of the crude mixture.
The diastereoselectivities (d. r.) were determined by GC-MS analysis of the crude mixture. Bu = tert-butyl.
Fig. 1Computed Gibbs free energy profile of the reductive coupling reaction between isobutyraldehyde (1a) and 1,1-diphenylethylene (2) promoted by the 4-(4-pyridinyl)benzonitrile-boryl radical (Int1). The optimized structures of transition states in the reaction path are also displayed. Interatomic distances are in Å.
Scheme 3Controlled experiments.