| Literature DB >> 35540444 |
Wael Abdelgayed Ahmed Arafa1,2, Hamada Mohamed Ibrahim2.
Abstract
A novel series of asymmetrically substituted bis-thioureas has been synthesized in an effective pattern via the reaction of diamines with isothiocyanates utilizing the ultrasonic irradiation as a sustainable energy source. This reaction performs well at mild conditions to give the products in quantitative yields for a broad scope of substrates. The bis-thiourea derivatives are used for the design of unprecedented series of bis-2-iminothiazolidin-4-ones promoted by the ultrasonic irradiation. The reaction affords the formation of regioselective products, which depends on the pK as of the diamines. The diamine linked to the thiourea possessing lower pK a is involved in the imino part, and the diamine having higher pK a is a part of the other heterocyclic nitrogen. Moreover, this new strategy has excellent environmental parameters, demonstrating that this protocol is a green and sustainable process. This journal is © The Royal Society of Chemistry.Entities:
Year: 2018 PMID: 35540444 PMCID: PMC9078912 DOI: 10.1039/c8ra01253a
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 3.361
Optimization of the reaction conditions for the preparation of 1,1′-[(1R,4R)-cyclohexane-1,4-diyl]bis(3-benzylthiourea) 3aa
|
| ||||
|---|---|---|---|---|
| Entry | Solvent | Method | Time (min) | Yield (%) |
| 1 | MeCN | Stirring | 120 | 45 |
| 2 | MeCN | Stirring | 120 | 58 |
| 3 | MeCN | US | 5 | 92 |
| 4 | DCM | US | 5 | 88 |
| 5 | EtOH | US | 5 | 21 |
| 6 | H2O | US | 10 | 25 |
| 7 | Acetone | US | 5 | 15 |
|
| — |
|
|
|
| 9 | — | US | 3 | 82 |
The reaction was conducted with 1a (1.0 mmol) and 2a (0.5 mmol).
Isolated yields.
The reaction was conducted with 1a (1.5 mmol) and 2a (0.5 mmol).
Scheme 1An ultrasound-assisted protocol for the synthesis of asymmetrically substituted bis-thioureas 3a–d.[26]
Optimization of the reaction conditions for the synthesis of dimethyl 2,2′-[(2Z,2′Z)-((1R,4R)-cyclohexane-1,4-diyl]bis(2-(benzylimino)-4-oxothiazolidin-3-yl-5-ylidene))(2Z,2′Z)-diacetate 5a
|
| ||||
|---|---|---|---|---|
| Entry | Solvent | Temp. (°C) | Time (min) | Yield (%) |
| 1 | EtOH | 23 | 7 | 84 |
| 2 | MeOH | 23 | 7 | 88 |
| 3 | H2O | 23 | 7 | 86 |
| 4 | MeCN | 23 | 7 | 65 |
| 5 | DCM | 23 | 7 | 60 |
| 6 | Dioxane | 23 | 7 | 46 |
| 7 | DMF | 23 | 7 | 55 |
| 8 | — | 23 | 10 | 67 |
| 9 | H2O | 50 | 7 | 75 |
| 10 | H2O | 70 | 7 | 63 |
|
|
|
|
|
|
| 12 | H2O | 23 | 25 | 89 |
Scheme 2An ultrasound-assisted protocol for the synthesis of 5–7.[27]
Scheme 3An ultrasound-assisted protocol for the synthesis of the derivatives 8–11.[31]
Scheme 4Scaled-up synthesis of derivatives 3a, 5a and 8a.