| Literature DB >> 22837660 |
Hui Luo1, Deyu Hu1, Jian Wu1, Ming He1, Linhong Jin1, Song Yang1, Baoan Song1.
Abstract
This study describes the simple synthesis of new (quinazolin-4-ylamino) methylphosphonates via microwave irradiation. Substituted-2-aminobenzonitrile reacted with 1,1-dimethoxy-N,N-dimethylmethanamine at a reflux condition to obtain N'-(substituted-2-cyanophenyl)-N,N-dimethylformamidine (1). The subsequent reaction of this intermediate product with α-aminophosphonate (2) in a solution containing glacial acetic acid in 2-propanol through microwave irradiation resulted in the formation of (quinazolin-4-ylamino)methyl-phosphonate derivatives 3a to 3x, which were unequivocally characterized by the spectral data and elemental analysis. The influence of the reaction conditions on the yield of 3a was investigated to optimize the synthetic conditions. The relative optimal conditions for the synthesis of 3a include a 1:1 molar ratio of N'-(2-cyanophenyl)-N,N-dimethylformamidine to diethyl amino(phenyl)methylphosphonate and a 4:1 volume ratio of isopropanol to HOAc in the solvent mixture, at a reaction temperature of 150 °C, with a microwave power of 100 W and a corresponding pressure of 150 psi for 20 min in the microwave synthesizer. The yield of 3a was approximately 79%, whereas those of 3b to 3x were approximately 77% to 86%. Some of the synthesized compounds displayed weak to good anti-Tobacco mosaic virus (TMV) activity.Entities:
Keywords: microwave irradiation; quinazoline derivatives; synthesis; α-aminophosphonate moiety
Mesh:
Substances:
Year: 2012 PMID: 22837660 PMCID: PMC3397492 DOI: 10.3390/ijms13066730
Source DB: PubMed Journal: Int J Mol Sci ISSN: 1422-0067 Impact factor: 6.208
Scheme IThe traditional method of producing the title compound 3.
Scheme IISynthesis of the title compounds 3a to 3x.
Synthesis of 3a under different reaction conditions.
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| Entry | Solvent | Time (min) | Reaction Temperature (°C) | Power(W) | Pressure (psi) | Yield (%) |
| 1 | isopropanol/acetic acid (v/v,4:1) | 20 | 100 | 100 | 100 | 59.0 |
| 2 | acetonitrile/acetic acid (v/v, 4:1) | 20 | 100 | 100 | 100 | 40.1 |
| 3 | chloroform/acetic acid (v/v, 4:1) | 20 | 100 | 100 | 100 | 43.9 |
| 4 | isopropanol/acetic acid (v/v, 4:2) | 20 | 100 | 100 | 100 | 51.3 |
| 5 | isopropanol/acetic acid (v/v, 4:1) | 10 | 100 | 100 | 100 | 45.1 |
| 6 | isopropanol/acetic acid (v/v, 4:1) | 30 | 100 | 100 | 100 | 62.5 |
| 7 | isopropanol/acetic acid (v/v, 4:1) | 20 | 130 | 100 | 130 | 69.6 |
| 8 | isopropanol/acetic acid (v/v, 4:1) | 20 | 150 | 100 | 150 | 79.0 |
| 9 | isopropanol/acetic acid (v/v, 4:1) | 20 | 170 | 100 | 170 | 77.0 |
| 10 | isopropanol/acetic acid (v/v, 4:1) | 20 | 150 | 60 | 100 | 43.0 |
| 11 | isopropanol/acetic acid (v/v, 4:1) | 20 | 150 | 80 | 100 | 70.0 |
| 12 | isopropanol/acetic acid (v/v, 4:1) | 360 | reflux | 0 | 0 | 33.5 |
Synthesis of (quinazolin-4-ylamino)methylphosphonate derivatives via microwave irradiation.
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Scheme IIIPossible mechanism for the formation of the title compounds.
The curative effect of the compounds 3a–x against TMV in vivo.
| Agent | Concentration (μg/mL) | Curative Effect (%) |
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| 500 | 43.2 | |
| 500 | 38.4 | |
| 500 | 32.0 | |
| 500 | 37.8 | |
| 500 | 31.9 | |
| 500 | 30.1 | |
| 500 | 35.9 | |
| 500 | 33.0 | |
| 500 | 33.9 | |
| 500 | 36.0 | |
| 500 | 31.9 | |
| 500 | 38.0 | |
| 500 | 44.0 | |
| 500 | 45.6 | |
| 500 | 41.2 | |
| 500 | 52.0 | |
| 500 | 49.1 | |
| 500 | 40.1 | |
| 500 | 51.9 | |
| 500 | 44.8 | |
| 500 | 47.9 | |
| Ningnanmycin | 500 | 55.9 |