| Literature DB >> 31803445 |
Luning Tang1, Ze-Yao Liu1, Wenzhi She1, Chao Feng1.
Abstract
A strategically novel single C-F bond functionalization of CF3-derived molecules, which shows a prominent advantage for the expedient construction of difluoromethylene-bridged organic scaffolds, is disclosed. The reported protocol consists of SN2' amination, N-alkylation and palladium-catalyzed allylic substitution reactions, which enables straightforward arylation and alkenylation of vinyltrifluoromethane derivatives. Furthermore, this strategy is characterized by its broad substrate scope with respect to both CF3-alkene and arylboronic acid derivatives. This journal is © The Royal Society of Chemistry 2019.Entities:
Year: 2019 PMID: 31803445 PMCID: PMC6849639 DOI: 10.1039/c9sc01966a
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Fig. 1Representative bioactive CF2-containing molecules.
Scheme 1Selective single C–F bond functionalization of CF3-derivatives. (a) C–F bond functionalization of CF3-arenes. (b) SN2′ type C–F bond activation of CF3-alkenes. (c) Our ipso-C–F bond functionalization of CF3-alkenes.
Optimization of reaction conditions
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| Entry | Ligand | Additive (mol%) | Yield |
| 1 | X-Phos | CuI (30%) | 41 |
| 2 | P(4-CF3C6H5)3 | CuI (30%) | 50 |
| 3 | P(C6F5)3 | CuI (30%) | 39 |
| 4 | C-Phos | CuI (30%) | 32 |
| 5 | P(4-CF3C6H4)3 | CuI (10%) | 5 |
| 6 | P(4-CF3C6H4)3 | CuI (50%) | 56 |
| 7 | P(4-CF3C6H4)3 | CuI (100%) | 72 |
| 8 | P(4-CF3C6H4)3 | CuI (200%) | 80 |
| 9 | P(4-CF3C6H4)3 | CuI (250%) | 80 |
| 10 | P(4-CF3C6H4)3 | CuBr·Me2S (200%) | 83 |
| 11 | P(4-CF3C6H4)3 | CuTc (200%) | 31 |
| 12 | P(4-CF3C6H4)3 | CuOAc (200%) | 29 |
| 13 | P(4-CF3C6H4)3 | CuBr·Me2S (200%) | 85 |
| 14 | P(4-CF3C6H4)3 | CuBr·Me2S (200%) | 99 |
| 15 | P(4-CF3C6H4)3 | CuBr·Me2S (200%) | 95 (92) |
Reaction conditions (unless otherwise specified): 3a (0.1 mmol, 1.0 equiv.), PhB(OH)2 (2.0 equiv.), Pd(PPh3)4 (10 mol%), ligand (20 mol%), additive (30 mol%), K2CO3 (2.0 equiv.), 1,4-dioxane (1 mL), 80 °C, and 20 h.
Yields determined by 19F-NMR spectroscopy using trifluoromethylbenzene as an internal standard.
Cs2CO3 instead of K2CO3.
5 Å molecular sieve (100 mg).
Pd(PPh3)4 (1 mol%) and P(4-CF3C6H4)3 (2 mol%).
Isolated yield.
Arylation of trifluoromethylalkene derivatives
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| Substrate | Products | Substrate | Products | ||||
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| 65% | 97% | 92% |
| 64% | 98% | 73% |
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| 59% | 95% | 62% |
| 80% | 93% | 72% |
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| 70% | 97% | 61% |
| 46% | 99% | 68% |
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| 53% | 98% | 90% |
| 48% | 94% | 30% |
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| 64% | 85% | 66% |
| 68% | 93% | 73% |
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| 56% | 95% | 87% |
| 48% | 95% | 75% |
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| 79% | 99% | 73% |
| 63% | 99% | 58% |
See the ESI for experimental details.
Scheme 2Reaction scope of boronic acid.
Scheme 3Gram-scale reaction.
Scheme 4Synthetic transformation of gem-difluoroallylarene 4a.