| Literature DB >> 28316644 |
Amin F M Fahmy1, Amira A El-Sayed1, Magdy M Hemdan1.
Abstract
BACKGROUND: Mechano heterocyclic chemistry (MCH) is a recent quickly growing technique in the synthesis of heterocycles and draws the attention of heterocyclic chemists towards the uses of grindstone technique in a solvent free green efficient synthesis of many heterocyclic systems. On the other hand, multicomponent approach has opened the door for the rapid and efficient one-step procedures to synthesize a wide range of complex targets. Azlactones have been reported to exhibit a wide range of pharmaceutical properties including immune suppressive, anticancer. Antimicrobial, antitumor, anti-inflammatory and antiviral. It also used as useful synthons in the synthesis of several small molecules, including amino acids and peptides.Entities:
Keywords: Atom economy; Azlactones; Mechanochemical synthesis; Multicomponent synthesis; Yield economy
Year: 2016 PMID: 28316644 PMCID: PMC5053219 DOI: 10.1186/s13065-016-0205-9
Source DB: PubMed Journal: Chem Cent J ISSN: 1752-153X Impact factor: 4.215
Scheme 1Two-step synthesis of azlactones using conventional methods
Scheme 2One-step mechanochemical synthesis of azlactones 2a–i
Physical data of the synthesized Azlactones 2a-i
| No | Ar | m.p. (°C) found/reported | Yield (%) G.a/Conv.b | Time (min) G.a/Conv.b | (YE) G./Conv. |
|---|---|---|---|---|---|
|
| C6H5 | 166–168/169 [ | 90/72 | 4/120 | 22.6/0.6 |
|
| 4-MeOC6H4 | 155–156/154 [ | 93/70 | 5/120 | 18.6/0.58 |
|
| 4-ClC6H4 | 189–190/190 [ | 96/69 | 10/120 | 9.6/0.57 |
|
| 4-Me2NC6H4 | 205–206/208 [ | 91/69 | 12/120 | 7.6/0.57 |
|
| 4-NO2C6H4 | 238–240/241 [ | 96/68 | 10/120 | 9.6/0.56 |
|
| 2-ClC6H4 | 150–152/153 [ | 88/72 | 12/120 | 7.3/0.6 |
|
| 2-BrC6H4 | 144–145/144 [ | 87/68 | 13/120 | 6.7/0.56 |
|
| 3,4-(OMe)2C6H3 | 148–150/152 [ | 87/70 | 8/120 | 9.7/0.58 |
|
| –CH=CHC6H5 | 130–131/131 [ | 79/71 | 6/120 | 13.2/0.59 |
G grinding, Conv conventional, YE yield economy
aGeneral conditions for the mechanochemical procedure: glycine (1.0 mmol) aromatic aldehyde (1.0 mmol), benzoyl chloride (1.0 mmol), fused sodium acetate (1.0 mmol) and acetic anhydride (cat.) were grinded in a mortar and pestle at room temperature for 4–13 min
bGeneral conditions for the conventional procedure: N-benzoyl glycine (1.2 mmol), aromatic aldehyde (1.0 mmol), acetic anhydride (3.0 mmol) and fused sodium acetate (1.5 mmol) on a hot plate to liquefaction, followed by heating on a water path for 2 h
Yield (%)/YE of solvent free G and other solvent free Lit. techniques
| No. | Yield (%/G) | (YE/G) | Yield (%) Lit. | (YE)a |
|---|---|---|---|---|
|
| 90 | 22 | 97 [ | 19.4 |
|
| 93 | 18.6 | 90 [ | 6.1 |
|
| 96 | 9.6 | 91 [ | 2.0 |
|
| 91 | 7.6 | 95 [ | 19 |
|
| 96 | 9.6 | 85 [ | 1.4 |
|
| 88 | 7.3 | 92 [ | 2.0 |
|
| 87 | 6.3 | 91 [ | 2.0 |
|
| 87 | 9.3 | 94 [ | 31.3 |
|
| 79 | 13.2 | 91 [ | 30.3 |
G Grinding, YE yield economy
a YE calculated yield economy on the bases of lit. Y (%)