Comparative compressibilities of calcite-structure carbonates: Deviations from empirical relations
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- Type
- article
- Published
- 1999-06-01
- Cited by
- 336
- References
- 52
- Access
- Open access
- OpenAlex
- https://openalex.org/W1872019155
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:93866426
Keywords
Compressibility, Bulk modulus, Nanocrystalline material, Inverse, Rutile
References
- The Elastic constants of Mn[2]SiO[4], Fe[2]SiO[4], and CO[2]SiO[4] and the elastic properties of olivine group minerals at high temperature
- Comparative Crystal Chemistry: Temperature, Pressure, Composition and the Variation of Crystal Structure
- Hydrostatic compression of Fe1‐x O Wüstite
- The equation of state and high-pressure behavior of magnesite
- High‐Pressure Equation of State for NaCl, KCl, and CsCl
- Anharmonicity and the equation of state for gold
- Revised values of effective ionic radii
- Influence of the Crystal‐Field Potential on Interionic Separation in Salts of Divalent Iron‐Group Ions
- Comparative Compressibilities of Silicate Spinels: Anomalous Behavior of (Mg,Fe)2SiO4
- Carbonate-silicate reactions at high presures and possible presence of dolomite and magnesite in the upper mantle
- Calculation of bulk modulus and its pressure derivatives from vibrational frequencies and mode Grüneisen Parameters: Solids with cubic symmetry or one nearest‐neighbor distance
- Pyroxene-carbonate reactions in the upper mantle
- Stability of Magnesite under the Lower Mantle Conditions
- The elastic properties of (MgxFe1−x)O solid solutions
- Anomalous temperature dependence of shear modulus c44 for platinum
- Phase relations in peridotite+CO2 Systems to 12 GPa: Implications for the origin of kimberlite and carbonate stability in the Earth's upper mantle
- THE ELASTIC CONSTANTS OF SINGLE CRYSTAL Fe1-xO, MnO AND CoO, AND THE ELASTICITY OF STOICHIOMETRIC MAGNESIOWÜSTITE
- Experimental evidence for carbonate stability in the Earth's lower mantle
- An evaluation of three-body interatomic forces and formulation of a general model
- Static compressibility of magnesite to 20 GPa: Implications for MgCO3 in the lower mantle
Cited by
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- Control of Exposed Facet and Morphology of Anatase Crystals through TiOxFy Precursor Synthesis and Impact of the Facet on Crystal Phase Transition
- High-pressure study of azurite Cu3(CO3)2(OH)2 by synchrotron radiation X-ray diffraction and Raman spectroscopy
- Nature of Rutile Nuclei in Anatase-to-Rutile Phase Transition.
- Reduced Organic Sulfur: Analyisis and Interaction with Mercury in the Aquatic Environment
- Insights on the reactivity of environmental iron-containing nanoparticles.
- Suppression of Anatase to Rutile Phase Transformation of Niobium doped TiO2 Synthesized by High Temperature Diffusion Technique
- The Hardest Superconducting Metal Nitride
- A shell model for the simulation of rhombohedral carbonate minerals and their point defects
- Nucleation and growth of self-assembled nanofibre-structured rutile (TiO2) particles via controlled forced hydrolysis of titanium tetrachloride solution
- Nanostructural Evolution of Titania‐Based Materials Using Modified Titanium Precursors
- There’s plenty of room at the bottom: nanoscience in geochemistry
- The influence of the precursor clusters on the structural and morphological evolution of nanostructured TiO2 under thermal annealing
- Effect of phase composition, morphology, and specific surface area on the photocatalytic activity of TiO2 nanomaterials
- Role of self-assembly in construction of inorganic nanostructural materials
- Ultrahigh pressure macro diamonds from Copeton (New South Wales, Australia), based on Raman spectroscopy of inclusions
- Thermal equation of state of magnesite to 32 GPa and 2073 K
- The effect of dissolved magnesium on creep of calcite II: transition from diffusion creep to dislocation creep
- Analysis of photocatalytic performance of nanostructured pyrogenic titanium dioxide powders in view of their polydispersity and phase transition: Critical anatase particle size as a factor for suppression of charge recombination
- An Ab-initio assessment of thermo-elastic properties of CaCO3 polymorphs: Calcite case
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