| Literature DB >> 31588300 |
Rong Zhou1,2,3, Jiesheng Li1, Han Wen Cheo1, Rachel Chua1, Gu Zhan4, Zhaomin Hou4, Jie Wu1.
Abstract
Isotopically labeled compounds are highly desirable as they can serve as both mechanistic probes in chemistry and diagnostic tools in medicinal research. Herein, we report an unprecedented visible-light-mediated metal-free deuteration of silanes using D2O as an inexpensive, readily available, and easy to handle deuterium source. A broad range of aryl- and alkyl-substituted silanes were deuterated with high deuterium incorporations and yields. Furthermore, a 100 gram-scale synthesis was demonstrated using continuous-flow micro-tubing reactors, where enhanced reaction efficiency was obtained. The photoredox-catalyzed polarity matched hydrogen atom transfer (HAT) between silanes and the thiol HAT catalyst was responsible for the efficient deuteration. This journal is © The Royal Society of Chemistry 2019.Entities:
Year: 2019 PMID: 31588300 PMCID: PMC6764258 DOI: 10.1039/c9sc02818h
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Scheme 1Silane deuteration and photocatalytic deuteration using D2O.
Survey of the model deuteration conditions
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| Entry | PC | Base | HAT-Cat | Solvent | Yield | D-inc. |
| 1 | PC | DIPEA | HAT-Cat | EtOAc | 77 | 89 |
| 2 | PC | DIPEA | HAT-Cat | EtOAc | 40 | 80 |
| 3 | PC | DIPEA | HAT-Cat | EtOAc | 48 | 70 |
| 4 | PC | DIPEA | HAT-Cat | EtOAc | — | — |
| 5 | PC | DIPEA | HAT-Cat | EtOAc | — | — |
| 6 | PC | DIPEA | HAT-Cat | CH2Cl2 | 50 | 13 |
| 7 | PC | DIPEA | HAT-Cat | THF | 20 | 73 |
| 8 | PC | DIPEA | HAT-Cat | CH3CN | 19 | 61 |
| 9 | PC | K2CO3 | HAT-Cat | EtOAc | 71 | 94 |
| 10 | PC | DBU | HAT-Cat | EtOAc | 78 | 95 |
| 11 | PC | Et3N | HAT-Cat | EtOAc | 48 | 86 |
| 12 | PC | DMAP | HAT-Cat | EtOAc | 81 | 34 |
| 13 | PC | — | HAT-Cat | EtOAc | 82 | 21 |
| 14 | PC | DBU | HAT-Cat | EtOAc | 70 | 52 |
| 15 | PC | DBU | HAT-Cat | EtOAc | 60 | 40 |
| 16 | PC | DBU | HAT-Cat | EtOAc | 42 | 84 |
| 17 | PC | DBU | HAT-Cat | EtOAc | 61 | 52 |
| 18 | No PC or HAT-Cat or light | — | — | |||
Typical conditions: silane (0.5 mmol), D2O (0.45 mL, 25 mmol), PC (0.01 mmol), base (0.05 mmol), and HAT-Cat (0.05 mmol) in solvent (2 mL), irradiated by 18 W blue LED.
Isolated yields of the Si–D/H mixtures.
Ratios determined by 1H NMR spectroscopy.
Recovery of the starting silane.
Photo-mediated deuteration of silanes using D2O
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Typical conditions: silane (0.5 mmol), D2O (0.45 mL, 25 mmol), DBU (7.5 μL, 0.05 mmol), triisopropylsilanethiol (10.7 μL, 0.05 mmol), and 4CzIPN (7.8 mg, 0.01 mmol) in ethyl acetate (2 mL), irradiated by 18 W blue LED. Isolated yields of the Si–D/H mixtures. Deuterium incorporation was determined by analysis of 1H NMR spectra.
DIPEA (8.2 μL, 0.05 mmol) was used instead of DBU.
Scheme 2Proposed mechanism for deuteration of organosilanes.
Scheme 3Reaction scaling up in continuous-flow reactors and synthesis of chiral deuterated silanes.