Size Disorder: A Descriptor for Predicting the Single- or Dual-Phase Formation in Multi-Component Rare Earth Zirconates

28 Pages Posted: 15 Apr 2022

See all articles by Yuhao Wang

Yuhao Wang

Harbin Institute of Technology

Yu-Jun Jin

Harbin Institute of Technology

Tao Wei

Government of the Commonwealth of Australia - Australian Nuclear Science and Technology Organisation

Zhi-Gang Wang

Inner Mongolia University of Science and Technology

Gui Cao

Harbin Institute of Technology

Zhao-Ying Ding

Harbin Institute of Technology

Zhan-Guo Liu

Harbin Institute of Technology

Jiahu Ouyang

Harbin Institute of Technology - School of Materials Science and Engineering

Yu-Jin Wang

Harbin Institute of Technology

Yaming Wang

Harbin Institute of Technology

Abstract

Eighteen different 5-component equimolar rare earth zirconates were successfully synthesized by solid state reaction method. Among them, 5 of them exhibit a high-entropy fluorite structure, 8 have a high-entropy pyrochlore structure, and the remaining 5 have dual-phase structures of both pyrochlore and fluorite. For high-entropy rare earth zirconates with single-phase structure, the lattice parameter is almost linearly correlated with the average cation radius ratio. In combination with a large number of previous reports, a summary is made to study the synergistic effects of the average cation radius ratio, configuration entropy and size disorder on the single-phase formation ability of multi-component rare earth zirconates. The conclusion verifies that the size disorder of about 5% is the boundary for the multi-component rare earth zirconates to form a single-phase or dual-phase region, while the average cation radius ratio of 1.467 is the demarcation between a pyrochlore and a defective fluorite structure in the single-phase zone, and the configuration entropy had less effect. Excessive size disorder leads to the enrichment or barrenness of certain components, which is the main reason for the formation of dual phase ceramics.

Keywords: size disorder, rare earth zirconates, high-entropy ceramics, multi-component zirconate ceramics

Suggested Citation

Wang, Yuhao and Jin, Yu-Jun and Wei, Tao and Wang, Zhi-Gang and Cao, Gui and Ding, Zhao-Ying and Liu, Zhan-Guo and Ouyang, Jiahu and Wang, Yu-Jin and Wang, Yaming, Size Disorder: A Descriptor for Predicting the Single- or Dual-Phase Formation in Multi-Component Rare Earth Zirconates. Available at SSRN: https://ssrn.com/abstract=4084603 or http://dx.doi.org/10.2139/ssrn.4084603

Yuhao Wang

Harbin Institute of Technology ( email )

92 West Dazhi Street
Nan Gang District
Harbin, 150001
China

Yu-Jun Jin

Harbin Institute of Technology ( email )

92 West Dazhi Street
Nan Gang District
Harbin, 150001
China

Tao Wei

Government of the Commonwealth of Australia - Australian Nuclear Science and Technology Organisation ( email )

Zhi-Gang Wang

Inner Mongolia University of Science and Technology ( email )

China

Gui Cao

Harbin Institute of Technology ( email )

92 West Dazhi Street
Nan Gang District
Harbin, 150001
China

Zhao-Ying Ding

Harbin Institute of Technology ( email )

92 West Dazhi Street
Nan Gang District
Harbin, 150001
China

Zhan-Guo Liu

Harbin Institute of Technology ( email )

92 West Dazhi Street
Nan Gang District
Harbin, 150001
China

Jiahu Ouyang (Contact Author)

Harbin Institute of Technology - School of Materials Science and Engineering ( email )

Yu-Jin Wang

Harbin Institute of Technology ( email )

92 West Dazhi Street
Nan Gang District
Harbin, 150001
China

Yaming Wang

Harbin Institute of Technology ( email )

92 West Dazhi Street
Nan Gang District
Harbin, 150001
China

Do you have a job opening that you would like to promote on SSRN?

Paper statistics

Downloads
45
Abstract Views
250
PlumX Metrics