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Rh₂O₃(II)-type Al₂O₃

Al2O3

third-order Birch-Murnaghan · Original · 2022

Why this differs from similar rows?

Table 1 'This study' preferred model with q fixed to 1 (same as Table 3 Model 2); sibling Table 3 rows fix q to different values (0.6, 1.4, 1.8, 2.2), changing the fitted K_T0/V0.

V₀
165.2
ų
Unit cell
K₀
256
GPa
Isothermal
K′
4
dimensionless

Volume (V₀)

Value Unit Basis Z
165.2 ų Unit cell

Reported value and unit are preserved as extracted. Z (formula units per cell) is not stored yet, so molar ↔ ų/f.u. conversion is not applied automatically.

Composition

OxideMolar
Al2O31

Formula: Al2O3

Conditions & method

Tref
300 K
Pref
Structure
other / unspecified
Method
experiment (XRD / DAC / multianvil compression)
synchrotron X-ray diffraction in laser-heated diamond anvil cells up to 153 GPa and 3,400 K, Pt pressure calibrant (Fei et al., 2007)
Sample
Table 1, This study; synthesized in situ from corundum + 7.5 wt% Pt

Source

Paper
Thermal Equations of State of Corundum and Rh2O3 (II)‐Type Al2O3 up to 153 GPa …
Authors
Weigang Shi; Wei Wei; Ningyu Sun; Zhu Mao; Vitali B. Prakapenka
DOI
10.1029/2021jb023805
Year
2022
Journal
Journal of Geophysical Research Solid Earth
Origin
Original (measured or fitted in the source paper)

Evidence from the paper

Table 1: Rh2O3(II)-type phase, This study: KT0 = 256(6) GPa, KT0' = 4(fixed), V0 = 165.2(7) Å3, θD0 = 600(200) K, γ0 = 1.47(5), q = 1(fixed). Text: 'we provide the first experimental constraints on the thermoelastic parameters of Rh2O3(II)-type Al2O3'.

Additional notes

theta D0 K
600(200)
gamma 0
1.47(5)
q
1(fixed)
lower mantle framing
phase discussed as lower-mantle Al2O3 polymorph