| Literature DB >> 35211274 |
Hui Liang1, Dong-Sheng Ji1, Guo-Qiang Xu1, Yong-Chun Luo1, Haixue Zheng2, Peng-Fei Xu1,2.
Abstract
Using diverse carbon-centered radical precursors and electron-rich (hetero)aromatics and alcohols as nucleophiles, a visible-light driven chiral phosphoric acid (CPA) catalyzed asymmetric intermolecular, three-component radical-initiated dicarbofunctionalization and oxytrifluoromethylation of enamines was developed, which provides a straightforward access to chiral arylmethylamines, aza-hemiacetals and γ-amino acid derivatives with excellent enantioselectivity. As far as we know, this is the first example of constructing a chiral C-O bond using simple alcohols via visible-light photocatalysis. Chiral phosphoric acid played multiple roles in the reaction, including controlling the reaction stereoselectivity and promoting the generation of radical intermediates by activating Togni's reagent. Mechanistic studies also suggested the importance of the N-H bond of the enamine and indole for the reactions. This journal is © The Royal Society of Chemistry.Entities:
Year: 2022 PMID: 35211274 PMCID: PMC8790774 DOI: 10.1039/d1sc06613g
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Scheme 1Asymmetric three-component radical-initiated 1,2-difunctionalization of alkenes.
Optimization of the reaction conditionsa
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| Entry | Variation from the standard conditions | Yield | ee |
| 1 | None | 54 | 96 |
| 2 | C2 instead of C1 | 20 | 25 |
| 3 | C3 instead of C1 | 0 | NA |
| 4 | 1b instead of 1a | 0 | NA |
| 5 | 1c instead of 1a | 0 | NA |
| 6 | 1d instead of 1a | Complex | NA |
| 7 | 1e instead of 1a | 0 | NA |
| 8 | THF/1,4-dioxane (1 : 1) instead of THF | 41 | 96 |
| 9 | 4CzIPN (1 mol%) | 50 | 96 |
| 10 | Ir(ppy)2(dtbbpy)PF6 (1 mol%) | 52 | 96 |
| 11 | No C1 | 0 | NA |
| 12 | No light | 0 | NA |
| 13 | No 3 Å MS | 40 | 90 |
Reaction conditions: 1a (0.1 mmol), 2 (0.15 mmol), 3a (0.2 mmol), 3 Å MS (50 mg) and (R)-CPA (5 mol%) in THF (1.0 mL) at −20 °C under irradiation of blue LEDs for 3 h.
Isolated yield.
Determined by chiral-phase HPLC. NA = not available.
Substrate scope of the aryltrifluoromethylation reactiona
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Reaction conditions: 1a (0.1 mmol), 2 (0.15 mmol), 3 (0.2 mmol), 3 Å MS (50 mg) and C1 (5 mol%) in THF (1.0 mL) at −20 °C under irradiation of 427 nm kessil LEDs for 3 h; isolated yield after chromatography; enatioselectivity was determined by HPLC on a chiral stationary phase.
For 24 h.
Substrate scope of the oxytrifluoromethylation reactiona
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Reaction conditions: 1a (0.1 mmol), 2 (0.15 mmol), 5 (0.1 mmol), 3 Å MS (50 mg) and C1 (5 mol%) in THF (1.0 mL) at 0 °C under irradiation of 427 nm kessil LEDs for 3 h; isolated yield after chromatography; enatioselectivity was determined by HPLC on a chiral stationary phase.
No 3 Å MS.
Substrate scope for the synthesis chiral γ-amino acid derivativesa
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Reaction conditions: 1c (0.2 mmol), 7 (0.1 mmol), 3 (0.15 mmol), 3 Å MS (100 mg), cat-CF3Ph (1 mol%) and C1 (5 mol%) in THF (0.5 mL) at r.t. under irradiation of 427 nm kessil LEDs for 12 h; isolated yield after chromatography; enatioselectivity was determined by HPLC on a chiral stationary phase.
Scheme 2Gram-scale reaction and derivatizations.
Scheme 3Mechanistic studies.
Fig. 1Proposed reaction mechanism.