High-pressure X-ray study of NbON oxynitride: direct transition from baddeleyite to cotunnite structure

Author:

Kozaki Shumma1,Yuan Yao1,Ubukata Hiroki1,Wei Zefeng1,Tsumori Tatsuya1,Asano Shuto2,Niwa Ken2,Hasegawa Masashi2,Kageyama Hiroshi1

Affiliation:

1. Department of Energy and Hydrocarbon Chemistry, Graduate School of Engineering, Kyoto University , Kyoto 615-8510 , Japan

2. Department of Crystalline Materials Science, Nagoya University , Nagoya 464-8603 , Japan

Abstract

Abstract The structural properties of NbON oxynitride under high pressure were investigated through in situ synchrotron X-ray diffraction (SXRD) up to 43 GPa. It was found that the bulk modulus of baddeleyite NbON (290 GPa) is larger than that of ZrO2 (150 GPa), indicating that the introduction of highly covalent nitrogen imparts greater stiffness. Furthermore, SXRD patterns reveal the emergence of a peak signaling a new crystalline phase above around 20 GPa. This is in contrast to TaON, where diffraction patterns only show an increase in background beyond 33 GPa. First-principle calculations suggest that the high-pressure phase adopts an orthorhombic cotunnite-type structure, distinguishing it from the oxide counterparts, wherein the ambient pressure phase transforms to a cotunnite structure via an orthorhombic-I structure.

Funder

Japan Society for the Promotion of Science

Advanced Research Networks

Grant-in-Aid for Specially Promoted Research

Hydrogen Ion Ceramics

CREST program

Japan Science and Technology Agency

Publisher

Oxford University Press (OUP)

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