| Literature DB >> 35765441 |
Truong Giang Luu1, Tien Tan Bui1,2, Hee-Kwon Kim1,3.
Abstract
Sulfonic ester is a chemical structure common to many organic molecules, including biologically active compounds. Herein, a visible-light-induced synthetic method to prepare aryl sulfonic ester from arylazo sulfones was developed. In the present study, a one-pot reaction was carried out using arylazo sulfones, DABSO (DABCO·(SO2)2), and alcohols in the presence of CuI as a coupling catalyst and HCl as an additive to yield sulfonic esters via multicomponent reaction. This synthetic method afforded a wide range of sulfonic esters with high yields under mild conditions. This journal is © The Royal Society of Chemistry.Entities:
Year: 2022 PMID: 35765441 PMCID: PMC9190201 DOI: 10.1039/d2ra02656b
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 4.036
Fig. 1Bioactive compounds containing sulfonic esters.
Scheme 1Synthetic procedures to give sulfonic esters.
Screening of reaction conditions for synthesis of sulfonic estersa
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|---|---|---|---|---|
| Entry | Catalyst | SO2 source agent | Additive | Yield |
| 1 | ZnCl2 | DABSO | HCl | Trace |
| 2 | SnCl2 | DABSO | HCl | Trace |
| 3 | ZrCl4 | DABSO | HCl | 21 |
| 4 | FeCl3 | DABSO | HCl | 23 |
| 5 | MnCl2 | DABSO | HCl | 25 |
| 6 | TiCl4 | DABSO | HCl | 62 |
| 7 | CuCl2 | DABSO | HCl | 74 |
| 8 | CuBr | DABSO | HCl | Trace |
| 9 | CuBr2 | DABSO | HCl | 71 |
| 10 | Cu(OAc)2 | DABSO | HCl | 75 |
| 11 | Cu(acac)2 | DABSO | HCl | 72 |
| 12 | CuI | DABSO | HCl | 85 |
| 13 | CuI | Na2S2O5 | HCl | Trace |
| 14 | CuI | K2S2O5 | HCl | Trace |
| 15 | CuI | DABSO | CF3COOH | 70 |
| 16 | CuI | DABSO | NaHCO3 | Trace |
| 17 | CuI | DABSO | K2CO3 | Trace |
| 18 | CuI | DABSO | DIEA | 35 |
| 19 | CuI | DABSO | DBU | 37 |
| 20 | CuI | DABSO | AcOH | 45 |
| 21 | CuI | DABSO | CH2BrCOOH | 47 |
| 22 | CuI | DABSO | CF3SO2H | 79 |
| 23 | CuI | DABSO | HCl | 82 |
| 24 | CuI | DABSO | HCl | 37 |
| 25 | CuI | DABSO | HCl | 75 |
Reaction conditions: compound 1 (1.0 mmol), SO2 source agent (1.0 mmol), catalyst (0.1 mmol), MeOH (20 mmol), additive (1.0 mmol), CH2Cl2 (2 mL), 4 h, irradiation by 5 W blue LEDs for 4 h.
Isolated yield after purification by flash column chromatography.
Irradiation by 5 W white LEDs.
Irradiation by 5 W green LEDs.
Irradiation by 20 W white CFL.
Screening of solvents for the preparation of sulfonic estersa
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|---|---|---|
| Entry | Solvent | Yield |
| 1 | 1,4-Dioxane | Trace |
| 2 | DMF | Trace |
| 3 | THF | 22 |
| 4 | Toluene | 35 |
| 5 | MeCN | 39 |
| 6 | DCE | 73 |
| 7 | CH2Cl2 | 85 |
Reaction conditions: compound 1 (1.0 mmol), MeOH (20 mmol), DABSO (1.0 mmol), CuI (0.1 mmol), HCl (1.0 mmol), irradiation by 5 W blue LEDs for 4 h.
Isolated yield after purification of flash column chromatography.
Substrate scope of arylazo sulfonea,b
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Reaction conditions: compound 1 (1.0 mmol), MeOH (20 mmol), DABSO (1.0 mmol), CuI (0.1 mmol), HCl (1.0 mmol), CH2Cl2 (2 mL), irradiation by 5 W blue LEDs for 4 h.
Isolated yield after purification of flash column chromatography.
Scheme 2Gram-scale reaction of arylazo sulfone (1a).
Substrate scope of alcoholsa,b
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Reaction conditions: compound 1 (1.0 mmol), alcohol (20 mmol), DABSO (1.0 mmol), CuI (0.1 mmol), HCl (1.0 mmol), CH2Cl2 (2 mL), irradiation by 5 W blue LEDs for 4 h.
Isolated yield after purification of flash column chromatography.
Scheme 3Control experiments.
Scheme 4Proposed reaction mechanism.