English

Experimental evidence for pressure-induced first order transition in cerium nitride from B1 to B10 structure type

Materials Science 2017-01-17 v1

Abstract

The crystal structure of CeN was investigated up to pressures of 82 GPa, using diamond anvil cell powder X-ray diffraction in two experiments with He and Si-oil as the pressure transmitting media. In contrast to previous reports, we do not observe the B2 (CsCl type) structure at high pressure. Instead, the structural phase transition, starting at 65 GPa, from the ambient rock salt B1 structure results in a distorted CsCl-like B10 structure, irrespective of the pressure medium. Our result unambiguously confirms two recent density functional theory (DFT) studies predicting the B10 phase to be stable at these pressures, rather than the B2 (CsCl type) phase previously reported. The B10 structure appears to approach the B2 structure as pressure is increased further, but DFT calculations indicate that an L1 0 structure (AuCu type) is energetically favored.

Keywords

Cite

@article{arxiv.1701.04237,
  title  = {Experimental evidence for pressure-induced first order transition in cerium nitride from B1 to B10 structure type},
  author = {Morten B. Nielsen and Davide Ceresoli and Jens-Erik Jørgensen and Clemens Prescher and Vitali B. Prakapenka and Martin Bremholm},
  journal= {arXiv preprint arXiv:1701.04237},
  year   = {2017}
}

Comments

35 pages, preprint