| Literature DB >> 28660057 |
Yongbing Liu1, Ke Yang1,2, Haibo Ge1.
Abstract
The direct cyanomethylation of unactivated sp3 C-H bonds of aliphatic amides was achieved via palladium catalysis assisted by a bidentate directing group with good functional group compatibility. This process represents the first example of the direct cross-coupling of sp3 C-H bonds with acetonitrile. Considering the importance of the cyano group in medicinal and synthetic organic chemistry, this reaction will find broad application in chemical research.Entities:
Year: 2016 PMID: 28660057 PMCID: PMC5477045 DOI: 10.1039/c5sc04066c
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Optimization of the reaction conditions
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| Entry | Pd source | Cu source | Base |
| Yield |
| 1 | Pd(OAc)2 | — | NaHMDS |
| 0 |
| 2 | Pd(OAc)2 | Cu(OAc)2 | — |
| 11 |
| 3 | Pd(OAc)2 | Cu(O2C | — |
| 20 |
| 4 | Pd(OAc)2 | Cu(acac)2 | — |
| Trace |
| 5 | Pd(OAc)2 | CuOAc | — |
| 11 |
| 6 | Pd(OAc)2 | Cu(O2C | — |
| 30 |
| 7 | Pd(OAc)2 | Cu(O2C | — |
| 23 |
| 8 | Pd(OAc)2 | Cu(O2C | — |
| 21 |
| 9 | Pd(OPiv)2 | Cu(O2C | — |
| 34 |
| 10 | PdCl2 | Cu(O2C | — |
| 22 |
| 11 | Pd(MeCN)2Cl2 | Cu(O2C | — |
| 26 |
| 12 | Pd(OPiv)2 | Cu(O2C | K3PO4 |
| 25 |
| 13 | Pd(OPiv)2 | Cu(O2C | KOAc |
| 49 |
| 14 | Pd(OPiv)2 | Cu(O2C | KOPiv |
| 52 |
| 15 | Pd(OPiv)2 | Cu(O2C | CsOPiv |
| 56 |
| 16 | Pd(OPiv)2 | Cu(O2C | CsOPiv |
| 69 |
| 17 | Pd(OPiv)2 | Cu(O2C | CsOPiv |
| 73 |
| 18 | Pd(OPiv)2 | Cu(O2C | CsOPiv |
| 76(72) |
| 19 | Pd(OPiv)2 | Cu(O2C | CsOPiv |
| 68 |
| 20 | Pd(OPiv)2 | Cu(O2C | CsOPiv | — | 9 |
| 21 | Pd(OPiv)2 | Cu(O2C | CsOPiv |
| 85(80) |
Reaction conditions: 1a (0.3 mmol), Pd source (0.036 mmol), L (0.12 mmol), Cu source (0.36 mmol), Ag2CO3 (0.6 mmol), base (0.36 mmol), MeCN (3.0 mL), air (1 atm), 130 °C, 15 h unless other noted.
Yields are based on 1a, determined by 1H-NMR using dibromomethane as the internal standard.
NaHMDS (1 M in THF, 1.5 mL) was used.
MeCN/toluene (1.5 mL/1.5 mL).
MeCN/hexane (1.5 mL/1.5 mL).
MeCN/heptane (1.5 mL/1.5 mL).
Isolated yield.
MeCN/cyclohexane (1.5 mL/1.5 mL).
Pd(OPiv)2 (0.045 mmol).
Scope of the linear aliphatic amides ,
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Reaction conditions: 1 (0.3 mmol), Pd(OPiv)2 (0.036 mmol), L2 (0.12 mmol), Cu(O2CPr)2 (0.36 mmol), Ag2CO3 (0.6 mmol), CsOPiv (0.36 mmol), MeCN (1.5 mL), heptane (1.5 mL), and air (1 atm), 130 °C, 15 h.
Isolated yield.
Pd(OPiv)2 (0.045 mmol).
Pd(OPiv)2 (0.06 mmol). Q = 8-quinolinyl.
Scope of the α-substituted aliphatic amides ,
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Reaction conditions: 1 (0.3 mmol), Pd(MeCN)2Cl2 (0.06 mmol), L2 (0.12 mmol), Cu(OAc)2·H2O (0.09 mmol), Ag2CO3 (0.6 mmol), KOPiv (0.09 mmol), MeCN (2.0 mL), air (1 atm), 130 °C, 1 h.
Isolated yield.
Pd(OPiv)2 (0.06 mmol), L2 (0.12 mmol), Cu(O2CPr)2 (0.36 mmol), Ag2CO3 (0.6 mmol), CsOPiv (0.36 mmol), MeCN (1.5 mL), heptane (1.5 mL), air (1 atm), 130 °C, 15 h. Q = 8-quinolinyl.
Scheme 1Control experiments on the reaction mechanism. Condition A: 1m or 5 (0.3 mmol), Pd(OPiv)2 (0.036 mmol), L2 (0.12 mmol), Cu(O2CPr)2 (0.36 mmol), Ag2CO3 (0.6 mmol), CsOPiv (0.36 mmol), MeCN (1.5 mL), heptane (1.5 mL), air (1 atm), 130 °C, 15 h. Condition B: 1m or 5 (0.3 mmol), Pd(MeCN)2Cl2 (0.06 mmol), L2 (0.12 mmol), Cu(OAc)2·H2O (0.09 mmol), Ag2CO3 (0.6 mmol), KOPiv (0.09 mmol), MeCN (2.0 mL), air (1 atm), 130 °C, 1 h.
Scheme 2Deuterium-labelling experiments.
Scheme 3Proposed reaction mechanism.
Scheme 4Removal of the directing group.