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Zero valence iron nanocube decoration of graphitic nanoplatelets

Title: Zero valence iron nanocube decoration of graphitic nanoplatelets
Authors: Narelle Brack; Michelle Spencer; Benjamin Mapleback; Andy Herries; Peter Kappen; Andrew Rider
Publication Year: 2022
Subject Terms: Nanochemistry; Theoretical quantum chemistry; graphitic nanoplatelets; iron nanocubes; magnetism
Description: Graphitic nanoplatelets (GNPs) have been treated using an ultrasonicated ozonolysis procedure to produce stable aqueous dispersions that facilitate deposition of thin films using electrophoretic deposition. The thin GNP films were then coated with zero valence (ZV) iron nanocubes using a pulsed electrodeposition technique. Characterization of the ZV-iron coating with deposition time revealed that the changing magnetic character of the ferromagnetic-graphitic hybrid material was related to the nucleation density and growth of the ZV-iron nanocubes. Density functional theory calculations show a preference for ZV-iron adsorption at the oxygen sites of the GNPs, with ZV-iron displacement of oxygen groups favored in some configurations. Transmission electron microscopy studies confirm ZV-iron growth nucleates preferentially at the graphite nanoplatelet edges and the hybrid material magnetism is affected by the convergent crystalline grain boundaries formed between adjacent ZV-iron nanocubes.
Document Type: article in journal/newspaper
Language: unknown
Relation: 10779/rmit.27550740.v1; https://figshare.com/articles/journal_contribution/Zero_valence_iron_nanocube_decoration_of_graphitic_nanoplatelets/27550740
Availability: https://figshare.com/articles/journal_contribution/Zero_valence_iron_nanocube_decoration_of_graphitic_nanoplatelets/27550740
Rights: All rights reserved
Accession Number: edsbas.F168B50E
Database: BASE