Synthesis of Iron Oxide Nanoparticle by Self Assembly Method and Catalytic Application
AL. Kavitha, H. Gurumallesh Prabu, K.U. Savitha
Abstract
AL. Kavitha, H. Gurumallesh Prabu, K.U. Savitha
Abstract
Iron oxide nanoparticle is a kind of novel functional material, which has been used in biotechnology and catalysis. In this study, the iron oxide nanoparticle was synthesized by self-assembly method and characterized by XRD, FT-IR, SEM and AFM analyses. The synthesized iron oxide nanoparticles were used for the catalytic degradation of a synthetic dye, Direct Red 7 (DR7). Iron oxide nanoparticles with H 2 O 2 degraded the dye more effectively when compared to ferrous sulphate with H 2 O 2 system. The percentage dye decolourisation was estimated from the UV-visible data. COD analysis was performed to assess the percentage dye degradation. The synthesized iron oxide nanoparticles yielded 100% decolourisation and 75% degradation
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Iron oxide nanoparticle is a kind of novel functional material, which has been used in biotechnology and catalysis. In this study, the iron oxide nanoparticle was synthesized by self-assembly method and characterized by XRD, FT-IR, SEM and AFM analyses. The synthesized iron oxide nanoparticles were used for the catalytic degradation of a synthetic dye, Direct Red 7 (DR7). Iron oxide nanoparticles with H 2 O 2 degraded the dye more effectively when compared to ferrous sulphate with H 2 O 2 system. The percentage dye decolourisation was estimated from the UV-visible data. COD analysis was performed to assess the percentage dye degradation. The synthesized iron oxide nanoparticles yielded 100% decolourisation and 75% degradation
Key concepts: Catalysis, Nanoparticle, Ferrous, Iron oxide nanoparticles, Degradation (telecommunications), Iron oxide, Oxide, Nuclear chemistry