Ultrafast x-ray diffraction of high-pressure phases in dynamically compressed TiO2

  • Ocampo, I. K.; 
  • Smith, R. F.; 
  • Kim, D.; 
  • Prakapenka, V.; 
  • Speziale, S.; 
  • 외 13명
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초록

We investigate the high-pressure polymorphism of TiO2 under laser-shock compression from 54(5) to 137(7) GPa using in situ femtosecond x-ray diffraction. Our results provide experimental evidence of the Pca21-type distorted fluorite structure formed from polycrystalline TiO2 dynamically compressed to 54(5) GPa. Upon higher compression, we observe the direct formation of the ninefold coordinated Fe2P-type phase at 68(4) and 78(3) GPa in polycrystalline and [001]-oriented TiO2, respectively. This represents an unprecedented 100 GPa reduction in the shock synthesis pressure of the Fe2P-type structure relative to quasihydrostatic loading conditions. On pressure release, the Fe2P-type phase transforms to the alpha-PbO2 structure and, at later times, reverts to rutile. Thus, the rutile-* Fe2P and alpha-PbO2-* rutile transformations are both observed to occur on nanosecond timescales. Our results highlight the unique ability of high-strain-rate uniaxial compression to synthesize novel high-pressure phases and also indicate the importance of in situ atomic-level probes in developing pressure-temperature phase diagrams.

키워드

MECHANICAL-PROPERTIES; RUTILE; TITANIUM; STATE; CONSTRAINTS; TRANSITION; FE2P-TYPE; POLYMORPH
제목
Ultrafast x-ray diffraction of high-pressure phases in dynamically compressed TiO2
저자
Ocampo, I. K.; Smith, R. F.; Kim, D.; Prakapenka, V.; Speziale, S.; Schoelmerich, M.; Appel, K.; Polsin, D. N.; Marshall, M.; Tracy, S. J.; Miozzi, F.; Lee, H. J.; Galtier, E.; Cunningham, E.; Mcguire, C.; Vennari, C.; Gleason, A. E.; Duffy, T. S.
DOI
10.1103/c7tc-66j6
발행일
2025-09-17
유형
Article
저널명
Physical Review B
권
112
호
10
페이지
1041031 ~ 1041039