Effect of processing route on the crystal structure and physical properties of bixbyite high-entropy oxides
- Authors
- Park, Taesung; Javadinejad, Hamid Reza; Kim, Young-Kuk; Chang, Hye Jung; Choi, Haneul; Woong, Choo; Ashong, Andrews Nsiah; Lee, Youn Seoung; Kim, Jeoung Han
- Issue Date
- 2022-02
- Publisher
- Elsevier BV
- Citation
- Journal of Alloys and Compounds, v.893
- Abstract
- (Y-La-Ce-Nd-Gd)(2)O3+beta high-entropy rare earth oxides (HE-REOs) were synthesized using both mechanochemical (ball milling) and chemical (sol-gel) methods. Energy-dispersive X-ray spectroscopy revealed that the compositional uniformity of the as-synthesized powders was the highest in the sol-gel process, followed by that in wet milling and dry milling. The sol-gel process was advantageous because it yielded oxide powders with the best compositional uniformity and required a lower annealing temperature to obtain a single phase compared to the ball-milled powders. However, following heat treatment at 1600 degrees C, similar chemical uniformity and physical properties of the oxides were obtained regardless of the synthesis method. The formation of single-phase Ia3 structures was confirmed by X-ray diffraction and Rietveld refinement analyses. A detailed transmission electron microscopy analysis revealed that a Fm3m structure formed at low temperatures. The thermodynamic parameters of high-entropy alloys, high-entropy transition metal oxides, and HE-REOs were calculated and compared. This analysis confirmed that the HE-REOs synthesized in the present study had very high phase stability. (C) 2021 Elsevier B.V. All rights reserved.
- Keywords
- LOW-TEMPERATURE SYNTHESIS; RARE-EARTH; SOL-GEL; PARTICLE-SIZE; TENSILE PROPERTIES; MICROSTRUCTURE; ALLOY; DESIGN; High-entropy oxide; Rare earth oxide; Crystal structure; Ball mill; Sol-gel; Phase stability
- ISSN
- 0925-8388
- URI
- https://pubs.kist.re.kr/handle/201004/115801
- DOI
- 10.1016/j.jallcom.2021.162108
- Appears in Collections:
- KIST Article > 2022
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