| Literature DB >> 29719579 |
Natalia Soldatova1, Pavel Postnikov1, Olga Kukurina1, Viktor V Zhdankin1,2, Akira Yoshimura1, Thomas Wirth3, Mekhman S Yusubov1.
Abstract
A facile synthesis of diaryliodonium salts utilizing Oxone as versatile and cheap oxidant has been developed. This method shows wide applicability and can be used for the preparation of iodonium salts containing electron-donating or electron-withdrawing groups in good yields. In addition, this procedure can be applied to the preparation of symmetric iodonium salts directly from arenes via a one-pot iodination-oxidation sequence.Entities:
Keywords: Oxone; diaryliodonium salts; iodine; iodonium; oxidation
Year: 2018 PMID: 29719579 PMCID: PMC5905280 DOI: 10.3762/bjoc.14.70
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Optimization studies.a
| entry | solvent | toluene (equiv) | Oxone (equiv) | H2SO4 (equiv) | yieldb (%) |
| 1 | – | 2.8 | 1.3 | 15 | 30c |
| 2 | CH2Cl2 | 2.8 | 1.3 | 15 | 40c |
| 3 | CH2Cl2/MeCN | 2.8 | 1.3 | 15 | 60c |
| 4 | MeCN | 2.8 | 1.3 | 15 | 75c |
| 5 | MeCN | 2.8 | 2 | 15 | 92c |
| 6 | MeCN | 1.2 | 2 | 15 | 88c |
| 7 | MeCN | 1.2 | 2 | 7.5 | 86 |
| 8 | MeCN | 1.2 | 2 | 3.75 | 53 |
aReaction conditions: PhI (1 mmol), overnight, rt; bisolated yield; caccording to NMR data product contains up to 10% of (4-tolyl)phenyliodonium 4-iodobenzenesulfonate as an impurity.
Synthesis of diaryliodonium bromides.a
| R1 ( | R2 ( | product | yieldb (%) |
| R1 = H ( | R2 = Me ( | 86c | |
| R1 = H ( | R2 = H ( | 74d,e,f | |
| R1 = H ( | R2 = 1,4-Me2 ( | 75 | |
| R1 = H ( | R2 = 1,3,5-Me3 ( | 75 | |
| R1 = 3-CF3 ( | R2 = H ( | 85e,f | |
| R1 = 3-CF3 ( | R2 = Me ( | 76c | |
| R1 = 3-CF3 ( | R2 = 1,4-Me2 ( | 95 | |
| R1 = 3-CF3 ( | R2 = 1,3,5-Me3 ( | 92 | |
| R1 = 3-CF3 ( | R2 = Cl ( | 51g,h | |
| R1 = 4-Br ( | R2 = Me ( | 70c | |
| R1 = 4-Br ( | R2 = 1,4-Me2 ( | 32 | |
| R1 = 4-Br ( | R2 = 1,3,5-Me3 ( | 71 | |
| R1 = 4-Br ( | R2 = Cl ( | 34g,h | |
| R1 = 3,5-(CF3)2 ( | R2 = H ( | 35e,f | |
| R1 = 3,5-(CF3)2 ( | R2 = 1,3,5-Me3 ( | 62 | |
aReaction conditions: 1 (1 mmol), 2 (1.1 mmol), H2SO4 (7.5 mmol), MeCN (2 mL) overnight, rt; bisolated yield; c1.2 mmol of 2a was used; daccording to NMR data product contains an up to 1.5% of diphenyliodonium 4-iodobenzenesulfonate as impurity; e11.3 mmol of H2SO4 was used; f1.3 mmol of 2b was used; g15 mmol of H2SO4 was used; h1.5 mmol of 2e was used.
Preparation of diaryliodonium salts with different anions.a
| NaX / HX | product | yieldb (%) |
| NaBr | 92 | |
| TsOH | 82 | |
| TfOH | 89 | |
| NaBF4 | 81 | |
| NaPF6 | 80 | |
aReaction conditions: 1b (1 mmol), 2d (1.1 mmol), Oxone (1 mmol), H2SO4 (7.5 mmol), MeCN (2 mL), NaX or HX (2 mmol) overnight, rt; bisolated yield.
Preparation of symmetric iodonium salts via a one-step iodination–oxidation procedure.a
| R2 ( | product | yieldb (%) |
| R2 = H ( | 84c,d | |
| R2 = 1,4-Me2 ( | 80 | |
| R2 = 1,3,5-Me3 ( | 77 | |
| R2 = Cl ( | 40e | |
aReaction conditions: ArH (2.2 mmol), Oxone (2 mmol), H2SO4 (7.5 mmol), MeCN (2 mL) overnight, rt; bisolated yield; caccording to NMR data the product contains up to 1.5% of diphenyliodonium 4-iodobenzenesulfonate as impurity; d11.3 mmol of H2SO4 and 2.6 mmol of 2b were used; e15 mmol of H2SO4 and 3.0 mmol of 2e were used.