Bio
Dr. Mallikarjun S Yadawe is a dedicated researcher and academic based in Bijapur, Karnataka, India. He is affiliated with S.B. Arts and K.C.P. Science College, Bijapur, and also serves as a Guest Faculty in the Department of Chemistry at Karnataka State Akkamahadevi Women's University, Vijayapur. With a strong background in coordination compounds and environmental chemistry, Dr. Yadawe has contributed significantly to the field, authoring 20 publications that have garnered 133 citations. His work includes the synthesis and spectral characterization of Thorium(IV) complexes with Schiff bases, as well as analysis of physico-chemical and heavy metal concentrations in soil. He holds an h-index of 5 and an i10-index of 2. Dr. Yadawe is an active reviewer for the Global Journal of Science Frontier Research (GJSFR) and has been a member of Gajaraj laboratory. His academic journey includes an M.Sc. and Ph.D. in Chemistry, and he continues to mentor scholars and lead research projects in his domain.
Educational Journey
M.Sc., Ph.D.
Karnataka State Akkamahadevi Women's University
M.Sc.Ph.D in Chemistry • Chemistry
Experience
Guest faculty
2016 - Present • ChemistryS.B. Arts and K.C.P. Science College, Bijapur
0 - 0Affiliations
Gajaraj laboratory
Membership
Member since 0Research
Synthesis and Spectral Characterization Of Thorium (IV) Complexes With 3-Substituted-4-Amino-5-Mercapto-1,2,4-Triazole Schiff Bases
Thorium(IV) complexes have been synthesized by reacting Th(IV) nitrate with Schiff bases derived from 3-substituted-4-amino-5-mercapto-1,2,4-triazole and glyoxal/ biacetyl/ benzyl in ethanol. These complexes have been characterized on the basis of elemental analysis, molar conductance and spectral studies. Analytical and spectral data suggest structures in which Th(IV) is six coordinated. All these complexes are light yellow in colour and are insoluble in DMF and DMSO. The elemental analysis show that, the complexes analysed for 1:1 stoichiometry of the type, Th.LH2(NO3)4.Conductance measurement in DMF are too low to account for any dissociation of these complexes in DMF at the concentration of the 10-3M.
