Sintering temperature–induced structural transition in LaCrO3‐based conducting oxides synthesized from nano‐powders

Author:

Liu Zenghui12ORCID,Xu Jun12,Zhai Junni12,Guo Zhixuan12,Wan Hongyan12,Xue Tao12,Li Jingrui12,Niu Gang12,Shi Peng12,Wang Lingyan12ORCID,Ren Wei12ORCID,Tian Bian23,Liu Hongzhong23,Jiang Zhuangde23,Ye Zuo‐Guang4ORCID

Affiliation:

1. Electronic Materials Research Laboratory, Key Laboratory of the Ministry of Education & International Center for Dielectric Research, School of Electronic Science and Engineering Xi'an Jiaotong University Xi'an China

2. International Joint Laboratory for Micro/Nano Manufacturing and Measurement Technology Xi'an Jiaotong University Xi'an China

3. State Key Laboratory for Manufacturing Systems Engineering Xi'an Jiaotong University Xi'an Shaanxi China

4. Department of Chemistry and 4D LABS Simon Fraser University Burnaby British Columbia Canada

Abstract

AbstractPreparation condition plays a critical role in the structure and properties of ceramics. However, exactly how it affects lanthanum chromate (LaCrO3)‐based conducting oxides remains poorly understood. In this work, the effects of sintering temperature on the crystal structure, microstructure, and electrical conductivity of pure and Sr2+‐/Ca2+‐substituted LaCrO3 ceramics have been investigated. It is found that the calcining temperature can be reduced by 200–300 K to obtain a single‐perovskite structure by using nano‐powders as raw materials. A sintering temperature–induced structural transition from orthorhombic Pbnm phase to rhombohedral phase is found in La0.8Sr0.2CrO3, and the possible mechanism is attributed to a thermally induced transformation of the thermodynamic metastable orthorhombic to stable rhombohedral phase after thermal treatment at higher temperatures. The electrical conductivity in a broad temperature range (from room temperature up to 1923 K) is measured. The conductivity increases with the elevated sintering temperature and soaking time, and it shows a remarkable enhancement by introducing the Sr and Ca ions. These results suggest that the sintering temperature should be well controlled and optimized to obtain desired crystal structure and electrical conductivity in LaCrO3‐based materials for various applications.

Funder

National Natural Science Foundation of China

Natural Sciences and Engineering Research Council of Canada

Publisher

Wiley

Subject

Materials Chemistry,Ceramics and Composites

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