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AN EASY AND FAST METHOD FOR CONVERSION OF OXIMES TO THE CORRESPONDING CARBONYL COMPOUNDS UNDER MICROWAVE IRRADIATION
AN EASY AND FAST METHOD FOR CONVERSION OF OXIMES TO THE CORRESPONDING CARBONYL COMPOUNDS UNDER MICROWAVE IRRADIATION
AN EASY AND FAST METHOD FOR OXIDATIVE DEPROTECTION OF TRIMETHYLSILYL ETHERS TETRAHYDROPYRANYL ETHERS AND ETHYLENE ACETALS WITH KMNO4 SUPPORTED ON ALUMINA UNDER SOLVENT-FREE CONDITIONS
AN EFFICIENT METHOD FOR SELECTIVE DEPROTECTION OF TRIMETHYLSILYL ETHERS TETRAHYDROPYRANYL ETHERS ETHYLENE ACETALS AND KETALS UNDER SOLVENT-FREE CONDITIONS
Benzyltriphenylphosphonium Chlorate (BTPPC) as a New and Mild Reagent for Oxidative Deprotection of Trimethylsilyl and Tetrahydropyranyl Ether of Benzylic alcohols Under Non-aqueous Conditions.
Benzyltriphenylphosphonium Chlorate (BTPPC) as a New and Mild Reagent for Oxidative Deprotection of Trimethylsilyl and Tetrahydropyranyl Ether of Benzylic alcohols Under Non-aqueous Conditions.
CONVERSION OF OXIMES PHENYLHYDRAZONES 2 4-DINITROPHENYL-HYDRAZONES AND SEMICARBAZONES TO CARBONYL COMPOUNDS WITH BENZYtriphenyl phosphonium chorochromate(BTPPCC)in the presence of aluminium chloride under non-aqueous conditions
DEPROTECTION OF TUIOACETALS BY WET ALUMINA SUPPORTED CR(VI) OXIDE UNDER SOLVENT-FREE CONDITIONS
EFFICIENT AND CONVENIENT OXIDATION OF URAZOLES TO THEIR CORRESPONDING TRIAZOLINEDIONES UNDER SOLVENT-FREE CONDITIONS
OXIDATION OF ALCOHOLS WITH BUTYLTRIPHENYLPHOSPHONIUM PERIODATE UNDER NON-AQUEOUS CONDITIONS
Microwave assisted oxidation of polyethylene under solid-state conditions with potassium permanganate
Microwave assisted oxidation of polyethylene under solid-state conditions with potassium permanganate
Microwave assisted oxidation of polyethylene under solid-state conditions with potassium permanganate
Oxidation of Urazoles to triazolinediones Under Solvent-Free Conditions using Permanganate and Alumina-Supported Permanganate
Oxidation of Urazoles to triazolinediones Under Solvent-Free Conditions using Permanganate and Alumina-Supported Permanganate
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