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Volumn 39, Issue 5, 2015, Pages 3388-3398
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One-pot synthesis of multisubstituted imidazoles under solvent-free conditions and microwave irradiation using Fe3O4@SiO2-imid-PMAn magnetic porous nanospheres as a recyclable catalyst
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Author keywords
[No Author keywords available]
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Indexed keywords
1 BENZYL 2 (3 METHOXYPHENYL) 4,5 DIPHENYL 1H IMIDAZOLE;
1 BENZYL 2 (4 CHLOROPHENYL) 4,5 DIPHENYL 1H IMIDAZOLE;
1 BENZYL 2 (4 HYDROXYPHENYL) 4,5 DIPHENYL 1H IMIDAZOLE;
1 BENZYL 2 (4 METHOXYPHENYL) 4,5 DIPHENYL 1H IMIDAZOLE;
1 BENZYL 2 (4 METHYLPHENYL) 4,5 DIPHENYL 1H IMIDAZOLE;
1 BENZYL 2 (PHENYL) 4,5 DIPHENYL 1H IMIDAZOLE;
1 METHYL 2,4,5 TRIPHENYL 1H IMIDAZOLE;
1 METHYL 4,5 DIPHENYL 2 P TOLYL 1H IMIDAZOLE;
1,2,4,5 TETRAPHENYLIMIDAZOLE;
1,4,5 TRIPHENYL 2 P TOLYL 1H IMIDAZOLE;
2 (3 NITROPHENYL) 4,5 DIPHENYL 1 P TOLYL 1H IMIDAZOLE;
2 (4 BROMOPHENYL) 1 METHYL 4,5 DIPHENYL 1H IMIDAZOLE;
2 (4 BROMOPHENYL) 1,4,5 TRIPHENYL 1H IMIDAZOLE;
2 (4 CHLOROPHENYL) 1,4,5 TRIPHENYL 1H IMIDAZOLE;
2 (4 CHLOROPHENYL) 4,5 DIPHENYL 1 PROPYL 1H IMIDAZOLE;
2 (4 METHOXYPHENYL) 4,5 DIPHENYL 1H IMIDAZOLE;
2 (4 METHYLPHENYL) 4,5 DIPHENYL 1 PROPYL 1H IMIDAZOLE;
2 (4 NITROPHENYL) 4,5 DIPHENYL 1 P TOLYL 1H IMIDAZOLE;
3 (4,5 DIPHENYL 1 P TOLYL 1H IMIDAZOL 2 YL) 1H INDOLE;
3 (4,5 DIPHENYL 1 P TOLYL 1H IMIDAZOL 2 YL)PHENOL;
4 (1,4,5 TRIPHENYL 1H IMIDAZOL 2 YL)PHENOL;
4 (4,5 DIPHENYL 1 P TOLYL 1H IMIDAZOL 2 YL)BENZONITRILE;
4,5 DIPHENYL 1,2 DIP TOLYL 1H IMIDAZOLE;
4,5 DIPHENYL 2 (THIOPHEN 2 YL) 1 P TOLYL 1H IMIDAZOLE;
IMIDAZOLE DERIVATIVE;
IRON OXIDE;
NANOSPHERE;
SILICON DIOXIDE;
UNCLASSIFIED DRUG;
ANALYTIC METHOD;
ARTICLE;
CARBON NUCLEAR MAGNETIC RESONANCE;
CATALYST;
DRUG SYNTHESIS;
DYNAMIC LIGHT SCATTERING;
INFRARED SPECTROSCOPY;
LEACHING;
LIGHT SCATTERING;
MAGNETIC FIELD;
MAGNETOMETRY;
MICROWAVE IRRADIATION;
NITROGEN PHYSISORPTION METHOD;
ONE POT SYNTHESIS;
PARTICLE SIZE;
PRIORITY JOURNAL;
PROTON NUCLEAR MAGNETIC RESONANCE;
REACTION TIME;
SCANNING ELECTRON MICROSCOPY;
TRANSMISSION ELECTRON MICROSCOPY;
VIBRATING SAMPLE MAGNETOMETRY;
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EID: 84929120545
PISSN: 11440546
EISSN: 13699261
Source Type: Journal
DOI: 10.1039/c5nj00050e Document Type: Article |
Times cited : (63)
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References (45)
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