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Facile synthesis of Super-paramagnetic Au @alpha-Fe2O3 hybrid nanoparticle and its assembly on graphene substrate for visible light Photo-catalysis

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dc.contributor.author Sahoo, R.K.
dc.contributor.author Manna, A.K.
dc.contributor.author Das, A.
dc.contributor.author Mitra, A.
dc.contributor.author Mohapatra, M.
dc.contributor.author Sarangi, S.N.
dc.contributor.author Garg, P.
dc.contributor.author Deshpande, U.
dc.contributor.author Varma, S.
dc.date.accessioned 2023-07-28T05:01:16Z
dc.date.available 2023-07-28T05:01:16Z
dc.date.issued 2022
dc.identifier.citation Applied Surface Science, 577, 2022: 151954
dc.identifier.issn 0169-4332
dc.identifier.uri http://ore.immt.res.in/handle/2018/3093
dc.description.abstract We report a simple interface modified strategy to self-assemble the as-synthesized Au@Fe2O3 nano structures by facile chemical synthesis route on graphene substrate (AFG) fo tau substrate mediated photo-catalytic dye degradation. The substrate modification, film formation, photo induced charge transfer mechanism and the physico-chemical properties of the AFG has been systematically analysed using different analytical techniques. The alteration in light absorption capacity and band gap of the hybrid with respect to the individuals have been observed using diffuse reflectance spectroscopy. Moreover, the broad absorption in the visible range and squeeze in band gap of the hybrid from 2.3 to 1.97 eV confirms the ability of the hybrid and the intention of hybridization for visible light-responsive photo-catalysis. Additionally, interesting superparamagnetic behaviour of the hybrid and its magnetic separation ability has been explored. Further, the applicability, repeatability and versatility of this AFG hybrid material in catalytic degradation of different dyes in presence of visible light have been analysed. This AFG catalyst exhibits excellent photocatalytic activity against the decolouration of the both cationic and anionic dyes. A systematic study in the photo-catalytic degradation behaviour, kinetic of degradation and the postulated mechanism has been proposed.
dc.language en
dc.publisher Elsevier
dc.relation.isreferencedby SCI
dc.rights Copyright [2022]. All efforts have been made to respect the copyright to the best of our knowledge. Inadvertent omissions, if brought to our notice, stand for correction and withdrawal of document from this repository.
dc.subject Chemical Sciences
dc.subject Materials Sciences
dc.subject Physical Sciences
dc.title Facile synthesis of Super-paramagnetic Au @alpha-Fe2O3 hybrid nanoparticle and its assembly on graphene substrate for visible light Photo-catalysis
dc.type Journal Article
dc.affiliation.author Inst Phys, Bhubaneswar 751005, Odisha, India


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