Relationship between crystal structure and thermo-mechanical properties of kaolinite clay: beyond standard density functional theory
The structural, mechanical and thermodynamic properties of 1 : 1 layered dioctahedral kaolinite clay, with ideal Al 2 Si 2 O 5 (OH) 4 stoichiometry, were investigated using density functional theory corrected for dispersion interactions (DFT-D2). The bulk moduli of 56.2 and 56.0 GPa predicted at 298...
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Veröffentlicht in: | Dalton transactions : an international journal of inorganic chemistry 2015-07, Vol.44 (28), p.1255-1256 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The structural, mechanical and thermodynamic properties of 1 : 1 layered dioctahedral kaolinite clay, with ideal Al
2
Si
2
O
5
(OH)
4
stoichiometry, were investigated using density functional theory corrected for dispersion interactions (DFT-D2). The bulk moduli of 56.2 and 56.0 GPa predicted at 298 K using the Vinet and Birch-Murnaghan equations of state, respectively, are in good agreement with the recent experimental value of 59.7 GPa reported for well-crystallized samples. The isobaric heat capacity computed for uniaxial deformation of kaolinite along the stacking direction reproduces calorimetric data within 0.7-3.0% from room temperature up to its thermal stability limit.
The structural, mechanical and thermodynamic properties of 1 : 1 layered dioctahedral kaolinite clay, Al
2
Si
2
O
5
(OH)
4
, were investigated using density functional theory corrected for dispersion interactions. Good agreement is obtained with the recent experimental values reported for well-crystallized samples. |
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ISSN: | 1477-9226 1477-9234 |
DOI: | 10.1039/c5dt00590f |