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Stability and structural properties of vacancy-ordered and -disordered ZrC x.


ABSTRACT: Vacancy-ordered superstructural phases of zirconium carbide have been intermittently observed at low temperatures for over 50 years. However, little is known about these ordered phases as they have proven to be challenging to fabricate experimentally, although theoretical predictions suggest that they should be significantly more stable than the more-observed vacancy-disordered solid solution ZrC x (x ≤ 1) phase at low temperatures. The stability and structural properties of the vacancy-ordered and vacancy-disordered phases are investigated using first-principles calculations. The stability of the ordered superstructural phases is related to the driving force from the relative instability of certain vacancy configurations, which are preferred or avoided in ordered structures. The trend of the vacancy ordering and the underlying mechanisms of the relative instability are explained in terms of the geometry of the crystal structures and the electronic charge distribution and atomic bonding features.

SUBMITTER: Davey T 

PROVIDER: S-EPMC9342847 | biostudies-literature | 2021 Oct

REPOSITORIES: biostudies-literature

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Stability and structural properties of vacancy-ordered and -disordered ZrC <sub><i>x</i></sub>.

Davey Theresa T   Suzuki Ken K   Miura Hideo H   Chen Ying Y  

RSC advances 20211004 52


Vacancy-ordered superstructural phases of zirconium carbide have been intermittently observed at low temperatures for over 50 years. However, little is known about these ordered phases as they have proven to be challenging to fabricate experimentally, although theoretical predictions suggest that they should be significantly more stable than the more-observed vacancy-disordered solid solution ZrC <sub><i>x</i></sub> (<i>x</i> ≤ 1) phase at low temperatures. The stability and structural propertie  ...[more]

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