“…1,2,4-Oxadiazoles are amazing classes of N-heterocyclic compounds showing their broad spectrum of valuable promising biological activities, such as muscarinic agonists, 4 serotoninergic (5-HT3) antagonists, 5 benzodiazepine receptor agonists, 6 dopamine ligands, 7 inhibitors of monoamine oxidase, 8 sphingosine-1-phosphate-1 (S1P 1 ) receptor agonist 9 can say that 1,2,4-oxaziazole core unit have been explored in past years. 1,2,4-Oxadiazoles have often been used as hydrolysis-resisting bioisosteric replacements for esters and amides 10 and as dipeptide mimetics 11 Bearing in mind the noteworthy relevancies in the fields of medicinal, biological and synthetic organic chemistry, there has been marvelous curiosity in developing efficient procedures for the synthesis of 1,2,4-oxadiazoles and quite number of synthetic procedures have been accounted in the literature for the synthesis of 1,2,4-oxadiazoles derivatives, which include the reaction of amidoxime with activated carboxylic acid derivatives such as acid chlorides, 12 fluorides, 13 anhydrides (BOP-Cl), 14 or active esters 15 using coupling reagents like, DCC, 16 DIC/HOBt, 17 TBTU, 18 CDI. 19 Besides this, metal catalysts, 20 TBAF, 21 microwave technique, 22 NaH, 23 NaOMe, 24 K 2 CO 3 25 and condensation of malonic diesters with amidoximes under neutral and solvent-free conditions 26 were also reported.…”