The electronic structure, surface properties, and in situ N2O decomposition of mechanochemically synthesised LaMnO3

Author:

Blackmore Rachel H.12345ORCID,Rivas Maria Elena67895,Tierney George F.12345ORCID,Mohammed Khaled M. H.101112513,Decarolis Donato12345,Hayama Shusaku14345,Venturini Federica14345,Held Georg14345ORCID,Arrigo Rosa1434515,Amboage Monica14345,Hellier Pip12345,Lynch Evan12345,Amri Mahrez67895,Casavola Marianna1011125,Eralp Erden Tugce67895,Collier Paul67895,Wells Peter P.12345ORCID

Affiliation:

1. UK Catalysis Hub, Research Complex at Harwell

2. Rutherford Appleton Laboratories

3. Harwell Science & Innovation Campus

4. Didcot

5. UK

6. Johnson Matthey Technology Centre

7. Blounts Court Road

8. Sonning Common

9. Reading

10. School of Chemistry

11. University of Southampton

12. Southampton

13. Department of Chemistry

14. Diamond Light Source Ltd.

15. School of Science

Abstract

This study reports the importance of advanced synchrotron techniques for understanding the effect of milling atmosphere, either air or argon, on mechanochemically prepared LaMnO3 and the catalytic performance towards N2O decomposition (deN2O).

Funder

Engineering and Physical Sciences Research Council

Science and Technology Facilities Council

University of Southampton

Publisher

Royal Society of Chemistry (RSC)

Subject

Physical and Theoretical Chemistry,General Physics and Astronomy

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3. J. Evans , X-Ray Absorption Spectroscopy for the Chemical and Materials Sciences , John Wiley & Sons Ltd , 2017

4. Understanding the mechanochemical synthesis of the perovskite LaMnO3 and its catalytic behaviour

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