| Literature DB >> 24454561 |
Samir Kundu1, Babli Roy1, Basudeb Basu1.
Abstract
The development of a silica-promoted highly selective synthesis of 1,2 or 1,3-dithioethers via solvent-free one-pot tandem reactions of an allyl bromide with excess thiol at room temperature is described. The choice of silica gel, either pre-calcined or moistened with water, exhibited notable regioselectivity in the formation of dithioethers. Plausible mechanistic routes were explored and postulated.Entities:
Keywords: allyl halide; dithioether; silica gel; tandem reactions; thiol
Year: 2014 PMID: 24454561 PMCID: PMC3896229 DOI: 10.3762/bjoc.10.5
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Scheme 1Sequential substitution-addition reactions of thiols with allyl halides leading to the formation of 1,2 or 1,3-dithioethers.
Optimization of one-pot sequential substitution–hydrothiolation of allylic substrate with excess benzenethiol over silica at room temperature.
| Entry | CH2=CH-CH2-X | Conditionsa | Time (h) | Productb/Yieldc (%) |
| 1 | X = Br | A | 6 | 1,2-dithioether/77 |
| 2 | X = Br | A | 11 | 1,2-dithioether/91 |
| 3 | X = Br | B | 20 | 1,3-dithioether/83 |
| 4 | X = I | A | 12 | 1,2-dithioether/89 |
| 5 | X = I | B | 20 | 1,3-dithioether/85 |
| 6 | X = Cl | A | 15 | 1,2-dithioether/57 |
| 7 | X = Cl | B | 30 | diphenyldisulfide/83 |
| 8 | X = OAc | A | 24 | diphenyldisulfide/90 |
| 9 | X = OTs | A | 8 | 1,2-dithioether/75 |
| 10 | X = OTs | B | 22 | 1,3-dithioether/68 |
| 11d | X = SPh | A | 5 | 1,3-dithioether/83 |
| 12d | X = SPh | B | 12 | 1,3-dithioether/80 |
| 13d | X = OPh | A | 6 | 3-phenoxythioether/89 |
| 14d | X = OPh | B | 14 | 3-phenoxythioether/82 |
| 15 | X = Br | Neat mixture | 20 | no dithioether is formed |
aConditions A: allylic compound and PhSH (1:2.5 mmol) over pre-calcined dry silica gel (0.5 g); conditions B: allylic compound and PhSH (1:2.5 mmol) over moistened silica gel (0.5 g). bIn each case 5–10% diphenyldisulfide was formed except in entries 6–8. cYield refers to isolated pure product and no other constitutional isomer was detected. dThiol (1.2 mmol) was used for entries 11–13.
Regioselective one-pot synthesis of 1,2 and 1,3-dithioethers using dry (pre-calcined) or moistened silica gel at room temperature.
| Entry | Thiol | Conditionsa | Time (h) | Product | Yieldb (%) |
| 1 | C6H5-SH | A | 10 | 91 | |
| 2 | C6H5-SH | B | 22 | 81 | |
| 3 | 4-(H3C)C6H4-SH | A | 6 | 87 | |
| 4 | 4-(H3C)C6H4-SH | B | 20 | 78 | |
| 5 | 4-(H3CO)C6H4-SH | A | 6.5 | 78 | |
| 6 | 4-(H3CO)C6H4-SH | B | 18 | 76 | |
| 7 | 4-(Cl)C6H4-SH | A | 6 | 83 | |
| 8 | 4-(Cl)C6H4-SH | B | 15 | 87 | |
| 9 | 4-(F)C6H4-SH | A | 8 | 80 | |
| 10 | 4-(F)C6H4-SH | B | 16 | 84 | |
| 11 | 2,6-(CH3)2)C6H3-SH | A | 8 | 74 | |
| 12 | 2,6-(CH3)2)C6H3-SH | B | 20 | 77 | |
| 13 | A | 9 | 67 | ||
| 14 | B | 16 | 71 | ||
| 15 | Cy-SH | A | 10 | 65 | |
| 16 | Cy-SH | B | 18 | 67 | |
| 17 | 2-(H3C)C6H4-SH | A | 7 | 71 | |
| 18 | 2-C10H7-SH | A | 9 | 82 | |
| 19c | C6H5-SH | B | 22 | ||
| 20 | C6H5-SH | Ad | 15 | 82 | |
aConditions A: allylic compound and PhSH (1:2.5 mmol) over pre-calcined dry silica gel (0.5 g); conditions B: allylic compound and PhSH (1:2.5 mmol) over moist silica gel (0.5 g). bYield refers to isolated pure product; in each case 5–10% diphenyldisulfide was formed and isolated. cD2O (0.5 mL for 0.5 g silica gel) was used instead of H2O. dMixture of silica and sodium silicate (1:1 w/w; 0.5 g for 1 mmol of allyl bromide) was used after drying under vacuum.
Scheme 2Plausible mechanisms for the regioselective formation of vicinal and 1,3-dithioethers by using dry or moistened silica gel.