Issue 18, 2021

Chemical synthesis of unique intermetallic TiFe nanostructures originating from the morphology of oxide precursors

Abstract

In this study, intermetallic TiFe nanostructures were chemically prepared from Ti–Fe oxide precursors using a CaH2 reducing agent in molten LiCl at as low as 600 °C. The used precursor was spherical oxide nanoparticles or commercial FeTiO3 bulk powder. After the reduction treatment, the former precursor was changed to an aggregation of TiFe nanoparticles with a particle size of 44–46 nm. Surprisingly, the latter precursor was reduced to a layered morphology composed of TiFe nanoparticles with a particle size of 47–65 nm. An intermetallic compound with a unique layered morphology was found for the first time, and the layered morphology could have originated from the morphology of the FeTiO3 precursor in which the Fe2+ and Ti4+ ions occupied alternating layers perpendicular to the trigonal c-axis. The precursor originated morphology was enabled by the proposed low reduction temperature method, and the environment-friendliness of the proposed method was finally evaluated using life-cycle assessment (LCA).

Graphical abstract: Chemical synthesis of unique intermetallic TiFe nanostructures originating from the morphology of oxide precursors

Supplementary files

Article information

Article type
Paper
Submitted
02 Apr 2021
Accepted
02 Jul 2021
First published
13 Jul 2021
This article is Open Access
Creative Commons BY license

Nanoscale Adv., 2021,3, 5284-5291

Chemical synthesis of unique intermetallic TiFe nanostructures originating from the morphology of oxide precursors

Y. Kobayashi, H. Y. Teah and N. Hanada, Nanoscale Adv., 2021, 3, 5284 DOI: 10.1039/D1NA00251A

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