Issue 32, 2022

Operating interfaces to synthesize L10-FePt@Bi-rich nanoparticles by modifying the heating process

Abstract

A facile strategy to operate interfaces when synthesizing L10-FePt@Bi-rich nanoparticles (NPs) has been proposed. Two interfaces are indispensable to obtain the high ordering L10-FePt structure. One is the mismatched interfaces between the initial γ-PtBi2 nuclei and the disordered fcc-FePt phase. The other is the in situ grown coherent interfaces between the L10-FePt and Bi-rich phases. Increasing the heating rates when the temperature rises from 120 °C to 310 °C benefits the formation of mismatched interfaces and improves the uniformity of phases and composition in NPs. Reducing the heating rate at higher temperature ensures sufficient time for Bi to diffuse across the coherent interface, which facilitates the disorder–order transition of L10-FePt NPs. This study provides a new perspective on operating interfaces during the wet-chemical synthesis process.

Graphical abstract: Operating interfaces to synthesize L10-FePt@Bi-rich nanoparticles by modifying the heating process

Supplementary files

Article information

Article type
Paper
Submitted
18 Mar 2022
Accepted
16 Jul 2022
First published
18 Jul 2022

Nanoscale, 2022,14, 11738-11744

Operating interfaces to synthesize L10-FePt@Bi-rich nanoparticles by modifying the heating process

L. Chang, C. Wu, Q. Wang, T. Li, D. Zhao, K. Wang, Q. Wang and W. Pei, Nanoscale, 2022, 14, 11738 DOI: 10.1039/D2NR01493A

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