Previous Research Projects M.Phil. Thesis Title: “ Synthesis and Characterization of MOF with Nitrogen and Oxygen Donor Ligands for Efficient Wastewater Treatment”. M.Sc. Thesis Title “Synthesis & characterization of Barium metal complexes with benzene-1,3,5-Tricarboxylic acid and their photo catalytic application” My Publish work as co-author Gd and Ni co-doped BiFeO 3 ferrite/r-GO nanocomposite for photocatalytic environmental remediation applications Near to Publish Augmenting the Corrosion Resistance of ZnAlMg Steel via Synergistic Incorporation of MgAlCe -BTC Layered Double Hydroxide-Based Nanofillers in Epoxy Coatings Near to Publish Visible-Light Activated PbFe 12 O 19 /g-C 3 N 4 Hybrid Photocatalysts for Rapid Degradation of Tetracycline in Hospital Wastewater
Photo-catalytic activity of Complex 1: Empirical formula: C 18 H 14 BaO Figure 4-1-4.Proposed Ball and stick model of complex 1
Gd and Ni co-doped BiFeO3 ferrite/r-GO nanocomposite for photocatalytic environmental remediation applications Research Paper Title
Synergistic effects of the co-doping of rare earth and transition metals on the structural, electrical and optical, in multi- ferroic BiFeO 3 nanoferrites (NFs) combined with reduced graphene oxide (r-GO) nanosheets, photocatalytic degradation properties can be boosted. In this current study gadolinium and nickel-co-doped Bi 1-x Gd x Fe 1-y Ni y O 3 were synthesised via the tartaric acid-assisted sol-gel method and their composite Bi 1-x GdxFe 1-y Ni y O 3 /r-GO with 10 % reduced graphene oxide (r-GO) via the ultra-sonication route. Phase and structural investigation were carried out using XRD, Raman scattering, and FTIR) analysis, which confirms the successful fabrication of co-doping in the rhombohedral geometry of the perovskite-type Bi 1-x GdxFe 1-y NiyO 3 . Electrical conductivity of the fabricated composite material was observed to increase because of the co-doping and the addition of r-GO. Abstract