| Literature DB >> 24839460 |
Ayman El-Faham1, Sherine N Khattab2, Hazem A Ghabbour3, Hoong-Kun Fun3, M Rafiq H Siddiqui4.
Abstract
BACKGROUND: The carbonyl group at position 2 of N-acetylisatin behaves as an amide which is more susceptible to nucleophilic attack via ring-opening in the presence of nucleophiles. Because of this behavior, in the present work we describe the microwave synthesis of a series of α-ketoamide and bis-(α-ketoamide) derivatives via the facile ring-opening of N-acylisatin with different amines and diamines. The microwave irradiation afforded the product in less reaction time, higher yield and purity. Reaction of N-acylisatin with methanol under microwave irradiation afforded the α-phenylglyoxyl methyl ester derivatives with excellent yields and purities. Aminolysis of the ester derivatives with piperidine and morpholine afforded the same α-ketoamide derivatives obtained from direct aminolysis of N-acylisatin. The structures of the synthesized compounds were confirmed by FT-IR, NMR, X-ray and elemental analysis.Entities:
Keywords: Microwave irradiation; N-acetylisatin; N-propionylisatin; X-ray crystallography; bis- α-ketoamide; α-ketoamide
Year: 2014 PMID: 24839460 PMCID: PMC4021159 DOI: 10.1186/1752-153X-8-27
Source DB: PubMed Journal: Chem Cent J ISSN: 1752-153X Impact factor: 4.215
Scheme 1General mechanism for the reaction of -acylisatin with amine or alcohol.
Scheme 2Synthesis of -acylisatin.
Scheme 3Reaction of -acylisatin with secondary amines.
Figure 1ORTEP representation of the crystal structure of 4a and 5a. (a) Ortep of N-(2-(2-oxo-2-(piperidin-1-yl)acetyl)phenyl)acetamide 4a CCDC 943007. (b) Ortep of N-(2-(2-oxo-2-(piperidin-1-yl)acetyl)phenyl)propionamide 5a CCDC 945756.
Crystal data and structure refinement details for compounds 4a and 5a
| C15H18N2O3 | C16H20N2O3 | |
| 274.31 | 288.34 | |
| Orthorhombic | Triclinic | |
| a = 10.0002 (2) Å | a = 5.1016 (2) Å, α = 83.188 (2)° | |
| b = 11.7485 (2) Å | b = 8.8474 (3) Å, β = 81.358 (3)° | |
| c = 11.9183 (2) Å | c = 16.9672 (5) Å, γ = 83.745 (3)° | |
| 1400.25 (4) Å3 | 748.54 (4) Å3 | |
| 1.301 g cm−3 | 1.279 g cm−3 | |
| 584 | 308 | |
| 0.82 × 0.67 × 0.43 mm | 0.43 × 0.25 × 0.23 mm | |
| θmax = 71.8°, θmin = 5.3° | θmax = 65.0°, θmin = 2.7° | |
| −12 < =h < =12, −12 < =k < =14, −13 < =l < =14 | −4 < =h < =5, −10 < =k < =10, −19 < =l < =19 | |
| 9719/2682 [ | 8120/ 2453 [ | |
| to theta 71.6 = 98.8% | to theta 65.0 = 96.8% | |
| multi-scan SADABS Bruker 2009 | multi-scan SADABS Bruker 2009 | |
| Full-matrix least-squares on | Full-matrix least-squares on | |
| 1.03 | 1.64 | |
| 943007 | 945756 |
Scheme 4Reaction mechanism of -acylisatin with methanol.
Figure 2Ortep of methyl 2-(2-acetamidophenyl)-2-oxoacetate 9a CCDC No. 942706.
Crystal data and structure refinement details for compound 9a
| C11H11NO4 | |
| 221.21 | |
| Monoclinic | |
| a = 7.3649 (2)Å | |
| b = 18.6848 (5)Å | |
| c = 9.3738 (3)Å, β = 121.126 (2)° | |
| 1104.23 (5) Å3 | |
| 1.331 g cm−3 | |
| 464 | |
| 0.52 × 0.48 × 0.22 mm | |
| θmax = 70.1°, θmin = 4.7° | |
| −8 < =h < =7, −22 < =k < =22, −9 < =l < =11 | |
| 7581/2018 [ | |
| to theta 70.1 = 96.2% | |
| multi-scan, SADABS Bruker 2009 | |
| Full-matrix least-squares on | |
| 1.11 | |
| 942706 |
Scheme 5Reaction of -acylisatin with diamines.