| Literature DB >> 24052845 |
Srinivasa Rao Jetti1, Divya Verma, Shubha Jain.
Abstract
An environmentally benign green protocol for the synthesis of 5-unsubstituted 3,4-dihydropyrimidin-2(1H)-ones using Amberlyst 15 DRY as a recyclable catalyst has been developed. The use of resinous, nontoxic, thermally stable, and inexpensive Amberlyst 15 DRY, as a recyclable heterogeneous catalyst, makes the process simple with negligible chemical waste. Among the various solid acid catalysts Amberlyst 15 DRY was found to be the most efficient catalyst with regard to reaction time, yield, and ease of work-up procedure.Entities:
Year: 2012 PMID: 24052845 PMCID: PMC3767336 DOI: 10.5402/2012/480989
Source DB: PubMed Journal: ISRN Org Chem ISSN: 2090-5149
Figure 1
Figure 2
Scheme 1Catalytic activity of different ion exchange resins in Biginelli condensationa.
| Entry | Ion exchange resin | Reaction time (h) | Yield (%) |
|---|---|---|---|
| 1 | — | 10 | Trace |
| 2 | Amberlyst-70 | 3 | 81 |
| 3 | Amberlyst 15 DRYa | 5.5 | 94 |
| 4 | Indion-130 | 3 | 92.5 |
| 5 | Indion-190 | 3.5 | 92 |
| 6 | Nafion-H | 4.5 | 85 |
| 7 | Envirocat EPZ10 | 6 | 84 |
| 8 | Montmorillonite KSF | 10 | 38 |
aReaction conditions: ethyl acetoacetate (1.0 mmol), benzaldehyde (1.0 mmol), and urea (1.2 mmol) in dry ethanol (10 mL), ion exchange resin (50 mg) at refluxing temperature.
Optimization of the reaction conditions for the synthesis of 1a a.
| Entry | Catalyst | Solvent | Time (h) | Yield (%) |
|---|---|---|---|---|
| 1 | Amberlyst 15 DRY | Water | 4 | 90 |
| 2 | Amberlyst 15 DRY | EtOH | 5.5 | 94 |
| 3 | Amberlyst 15 DRY | CH3CN | 6.5 | 85 |
| 4 | Amberlyst 15 DRY | THF | 6 | 87 |
| 5 | Amberlyst 15 DRY | Benzene | 10 | Trace |
| 6 | Amberlyst 15 DRY | Toluene | 10 | Trace |
aAll reactions were conducted at reflux temperature of the solvent used.
Amberlyst 15 DRY catalyzed synthesis of dihydropyrimidine-2-(1H)-ones/thiones.
| Entry | R1 | R2 | X | Productsa | Yieldb (%) | M.P (°C) |
|---|---|---|---|---|---|---|
| 1 | C6H5 | Et | O |
| 89 | 205–207 |
| 2 | 4-(CH3O)–C6H4 | Et | O |
| 90 | 202-203 |
| 3 | 4-(NMe2)–C6H4 | Et | O |
| 83 | 254–256 |
| 4 | 4-NO2–C6H4 | Et | O |
| 94 | 212-213 |
| 5 | 4-(Cl)–C6H4 | Et | O |
| 91 | 214–215 |
| 6 | 4-(NO2)C6H4 | Me | O |
| 95 | 237–239 |
| 7 | 4-(CH3O)–C6H4 | Me | O |
| 84 | 192-193 |
| 8 | C6H5–CH=CH | Et | O |
| 94 | 231–233 |
| 9 | 3-NO2–C6H4 | Et | S |
| 92 | 206-207 |
| 10 | 4-(CH3O)–C6H4 | Et | S |
| 90 | 154–156 |
| 11 | C4H4N | Et | O |
| 83 | 180–182 |
| 12 | C4H3O | Et | O |
| 85 | 211–213 |
| 13 | C4H3S | Et | O |
| 86 | 201–203 |
| 14 | C8H6N | Et | O |
| 80 | 212–214 |
| 15 | C5H4N | Et | O |
| 91 | 193-194 |
| 16 | C5H4N | Et | S |
| 85 | 168-169 |
| 17 | C9H6N | Et | O |
| 91 | 245–247 |
| 18 | C4H3N2 | Et | O |
| 89 | 255–257 |
| 19 | C10H7 | Et | O |
| 92 | 182–185 |
| 20 | C9H5O3 | Et | O |
| 89 | 277–279 |
aReaction conditions: β-ketoester (1.0 mmol), aldehyde (1.0 mmol), and urea/thiourea (1.2 mmol) in dry ethanol (10 mL), ion exchange resin (50 mg) at refluxing temperature. bIsolated yields.
Figure 3Graphical representation of recycle data for the reaction of EAA, benzaldehyde, and urea using Amberlyst 15 DRY.
Scheme 2Amberlyst 15 DRY catalyzed synthesis of 5-unsubstitued 3,4-dihydropyrimidin-2(1H)-ones 2(a–f).
| Entry | R | Productsa | Yieldb (%) | M.P (°C) |
|---|---|---|---|---|
| 1 | C6H5 |
| 90 | 233–236 |
| 2 | 4-(Cl)–C6H4 |
| 92 | 267–269 |
| 3 | 4-(CH3)–C6H4 |
| 86 | 248–250 |
| 4 | 4-(CH3O)–C6H4 |
| 84 | 259–261 |
| 5 | 2-(Cl)–C6H4 |
| 91 | 260–263 |
| 6 | 3-(CH3O) –C6H4 |
| 88 | 256–258 |
aReaction conditions: acetophenone (1.0 mmol), benzaldehyde (1.0 mmol), and urea (1.5 mmol) in dry ethanol (10 mL), ion exchange resin (50 mg) at refluxing temperature. bIsolated yields.
Scheme 3Amberlyst 15 DRY catalyzed reaction of cyclohexanone, aldehyde, and urea.
| Entry | R | Productsa | Yieldb (%) | M.P (°C) |
|---|---|---|---|---|
| 1 | C6H5 |
| 93 | 327–329 |
| 2 | 4-(NO2)C6H4 |
| 85 | 341–343 |
| 3 | 4-(CH3)C6H4 |
| 89 | 348–351 |
| 4 | 2-(Cl)–C6H4 |
| 88 | 321–323 |
aReaction conditions: cyclohexanone (1.0 mmol), aldehyde (2.0 mmol), and urea (3.0 mmol) in dry ethanol (10 mL), ion exchange resin (50 mg) at refluxing temperature. bIsolated yields.
Figure 4Physical properties of Amberlyst 15 DRY.
| Physical form | Opaque beads |
| Ionic form as shipped | Hydrogen |
| Concentration of acid sites | ≥4.7 eq/Kg |
| Water content | ≤1.5% (H+ form) |
| Shipped weight | 610 g/L (38 lbs/ft) |
| Fines content | <0.300 mm: 1.0% max |
| Surface area | 45 m2/g |
| Average pore diameter | 250 Å |
| Swelling | |
| 60 to 70% (dry to Water) | |
| 10 to 15% (dry to hexane) | |
| 10 to 15% (dry to toluene) | |
| 15 to 20% (dry to ethylene dichloride) | |
| 30 to 40% (dry to ethyl acetate) | |
| 60 to 70% (dry to ethyl alcohol, 95%) | |
| 15 to 20% (dry to phenol) | |
| 3 to 5% (dry to benzene) |