Bi3.25La0.75Ti2.5Nb0.25(Fe0.5Co0.5)0.25O12, a single phase room temperature multiferroic

Author:

Li Zheng12345,Tao Kun6789ORCID,Ma Jing101112139,Gao Zhipeng1415169ORCID,Koval Vladimir171819ORCID,Jiang Changjun6789,Viola Giuseppe20212223ORCID,Zhang Hangfeng2445,Mahajan Amit12345,Cao Jun12345,Cain Markys2526275ORCID,Abrahams Isaac2445ORCID,Nan Cewen101112139,Jia Chenglong6789,Yan Haixue12345ORCID

Affiliation:

1. School of Engineering and Materials Science

2. Queen Mary University of London

3. Mile End Road

4. London

5. UK

6. Key Laboratory for Magnetism and Magnetic Materials of MOE

7. Lanzhou University

8. Lanzhou 730000

9. China

10. School of Materials Science and Engineering

11. and State Key Laboratory of New Ceramics and Fine Processing

12. Tsinghua University

13. Beijing 100084

14. National Key Laboratory of Shock Wave and Detonation Physics

15. Institute of Fluid Physics China Academy of Engineering Physics

16. Mianyang

17. Institute of Materials Research Slovak Academy of Sciences Watsonova 47

18. 04001 Kosice

19. Slovakia

20. Department of Applied Science and Technology

21. Institute of Materials Physics and Engineering

22. 10129 Torino

23. Italy

24. School of Biological and Chemical Sciences Queen Mary University of London Mile End Road

25. Electrosciences Ltd

26. Farnham

27. Surrey GU9 9QT

Abstract

A new single phase Aurivillius structured ceramic shows room temperature multiferroic behavior.

Funder

Royal Academy of Engineering

Slovenská Akadémia Vied

National Natural Science Foundation of China

Science and Technology Facilities Council

Publisher

Royal Society of Chemistry (RSC)

Subject

Materials Chemistry,General Chemistry

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