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Synthesis of high-entropy La2B2O7 ceramics with non-equivalent principal elements in B-sites and their CMAS resistance performance.

Authors :
Wang, Yuhan
Zhu, Jinpeng
Shao, Gang
Wang, Hailong
Li, Mingliang
Lu, Hongxia
Zhang, Rui
Source :
Journal of Alloys & Compounds. Nov2022, Vol. 924, pN.PAG-N.PAG. 1p.
Publication Year :
2022

Abstract

A new method is proposed to predict the formation of high-entropy single-phase oxide with a pyrochlore structure synthesis from non-equivalent principal elements. Based on this concepte, the La 2 B 2 O 7 (B = Zn2+, Mg2+/Ni2+, Ce4+/Zr4+/Hf4+/Sn4+/Ti4+, W6+, Mo6+) were designed, in which high-entropy La 2 (ZnMgZrWMo) 2 O 7 , La 2 (ZnMgHfWMo) 2 O 7 and La 2 (ZnMgSnWMo) 2 O 7 pyrochlore ceramics were successfully prepared by solid-phase sintering. The microstructure of the entropy-stabilized phase was demonstrated using X-ray diffraction and elemental mapping, and the thermal properties including the thermal expansion coefficient and thermal conductivity were analyzed. The results show that La 2 (ZnMgZrWMo) 2 O 7 has a higher thermal expansion coefficient (13.9 × 10–6 K–1) and lower thermal conductivity (0.8 W/m·K) than its corresponding single-components compound. In addition, La 2 B 2 O 7 (B = Zn2+, Mg2+, Zr4+/Hf4+/Sn4+, W6+, Mo6+) pyrochlore high-entropy ceramics exhibit good calcium – magnesium – aluminosilicate (CMAS) resistance, the apatite protective layer generated after the reaction of La with CMAS effectively prevents further corrosion. This study suggests a novel method for predicting the formation of high-entropy single-phase oxides of pyrochlore structures and provides a new design concept for anti-CMAS corrosion materials. • A novel prediction criterion is proposed to synthesis high-entropy single-phase oxide with a pyrochlore structure. • High-entropy ceramic synthesized by non-equivalent state principal element has better thermophysical properties. • La3+ in the pyrochlore structure can react with CMAS faster to form a resistant layer preventing further corrosion. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09258388
Volume :
924
Database :
Academic Search Index
Journal :
Journal of Alloys & Compounds
Publication Type :
Academic Journal
Accession number :
158727566
Full Text :
https://doi.org/10.1016/j.jallcom.2022.166635