| Literature DB >> 35558195 |
Raju Jannapu Reddy1, Md Waheed1, Jangam Jagadesh Kumar1.
Abstract
A practical, highly flexible and eco-friendly method has been developed for the synthesis of allyl thiosulfonates using Morita-Baylis-Hillman (MBH) allyl bromides and sodium arylthiosulfonates, which were readily assembled without any reagent/catalyst. Moreover, the allyl thiosulfonates were successfully transformed into a set of two synthetically viable diallyl disulfanes and unsymmetrical allyl disulfanes in the presence of Cs2CO3. The present protocols are operationally simple and convenient to generate a wide range of functionalized allyl thiosulfonates and allyl disulfanes in good to excellent yields. This journal is © The Royal Society of Chemistry.Entities:
Year: 2018 PMID: 35558195 PMCID: PMC9091482 DOI: 10.1039/c8ra06938g
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 4.036
Scheme 1Strategy for synthesis of allyl thiosulfonates and allyl disulfanes.
Substrate scope for synthesis of allyl thiosulfonatesa,b
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All reactions performed on 0.4 mmol of 1a–t (1 eq.), sodium thiosulfonates 2a–d (1.5 eq.) in CH3CN (2 mL) at room temperature.
Isolated yields. Reactions performed on a 4 mmol scale for synthesis of 3aa/b and 2 mmol scale for synthesis of 3ba, (3b–e, g–i, k, n, o, q)b and 3ad (see ESI).
Scheme 2Synthesis of methyl 2H-thiochromene-3-carboxylate (4).
Optimization for synthesis of allyl disulfanes from thiosulfonate 3aba
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| Entry | Reaction conditions | Time | 5a | 6a |
| 1 | CuI (10 mol%), 1,10-phen (20 mol%), Cs2CO3 (2 eq.), DMF, 90 °C | 6 h | 20% | 14% |
| 2 | CuBr (10 mol%), 1,10-phen (20 mol%), Cs2CO3 (2 eq.), DMF, 90 °C | 6 h | 29% | 20% |
| 3 | CuBr (10 mol%), 1,10-phen (20 mol%), K2CO3 (2 eq.), DMF, 90 °C | 6 h | NR | NR |
| 4 | CuBr (10 mol%), 1,10-phen (20 mol%), Cs2CO3 (2 eq.), toluene, 90 °C | 6 h | 34% | 11% |
| 5 | CuBr (10 mol%), 1,10-phen (20 mol%), Cs2CO3 (2 eq.), THF, 60 °C | 4 h | 30% | 20% |
| 6 | CuBr (10 mol%), Cs2CO3 (2 eq.), THF, 60 °C | 4 h | 35% | 22% |
| 7 | CuBr (5 mol%), Cs2CO3 (2 eq.), THF, 60 °C | 4 h | 38% | 24% |
| 8 | CuBr (10 mol%), THF, 60 °C | 6 h | NR | NR |
| 9 | Cs2CO3 (2 eq.), THF, 60 °C | 2 h | 45% | 36% |
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| 11 | Cs2CO3 (0.5 eq.), THF, 60 °C | 4 h | 38% | 29% |
| 12 | DBU (2 eq.), THF, 60 °C | 6 h | 20% | 20% |
| 13 | DABCO (2 eq.), THF, 60 °C | 6 h | NR | NR |
| 14 | K2CO3 (2 eq.), THF, 60 °C | 6 h | NR | NR |
| 15 | Without base, THF, 60 °C | 6 h | NR | NR |
All reactions performed on a 0.4 mmol scale of 3ab in solvent (2 mL).
Isolated yields. NR: no reaction.
Substrate scope for synthesis of allyl disulfanesa,b
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All reactions performed on 0.8 mmol of allyl thiosulfonates (1 eq.) and Cs2CO3 (1.0 eq.) in dry THF (4 mL) at 60 °C for 2 h.
Isolated yields.
Scheme 3Reactions performed on 0.8 mmol of 3ab/3hb with KSAc (1.5 eq.). A gram scale reaction of allyl bromide 1a with 2b/KSAc for the synthesis of 7a.
Scheme 4Control experiments.