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http://nopr.niscpr.res.in/handle/123456789/6699| Title: | Greener organic syntheses under non-traditional conditions |
| Authors: | Varma, Rajender S |
| Keywords: | Green chemistry;organic synthesis;solvent-free reactions;microwave irradiation;ultrasonic irradiation;ionic liquids;aqueous media |
| Issue Date: | Oct-2006 |
| Publisher: | CSIR |
| IPC Code: | Int. Cl.8 CO7D |
| Abstract: | A solvent-free approach that involves microwave (MW) exposure of neat reactants (undiluted) catalyzed by the surfaces of less-expensive and recyclable mineral supports such as alumina, silica, clay, or ‘doped’ surfaces is presented which is applicable to a wide range of cleavage, condensation, cyclization, rearrangement, oxidation and reduction reactions including rapid one-pot assembly of heterocyclic compounds from in situ generated reactive intermediates. The strategy is adaptable to multi-component reactions e.g. Ugi and Biginelli reactions for rapid assembly of a library of compounds. Synthesis of a wide variety of significant precursors and intermediates namely, enones, imines, enamines, nitroalkenes, and oxidized sulfur species is possible and their value in concise MW synthesis of 2-aroylbenzofurans, and thiazole derivatives is illustrated. Ultrasound- and MW-assisted solventless preparation of ionic liquids and their application in alkylation and metal-catalyzed multi-component reactions is described. Efficient reaction of epoxides with carbon dioxide provides ready access to cyclic carbonates using only a catalytic amount of recyclable indium-based ionic liquid. MW heating in aqueous reaction media enables expeditious N-alkylation reactions of amines and hydrazines to afford a series of heterocyclic ring systems such as N-azacycloalkanes, 4,5-dihydropyrazoles, pyrazolidines etc. |
| Page(s): | 2305-2312 |
| ISSN: | 0975-0983(Online); 0376-4699(Print) |
| Appears in Collections: | IJC-B Vol.45B(10) [October 2006] |
Files in This Item:
| File | Description | Size | Format | |
|---|---|---|---|---|
| IJCB 45B(10) 2305-2312.pdf | 134.64 kB | Adobe PDF | View/Open |
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