Thermodynamic and magnetic properties of knorringite garnet (Mg3Cr2Si3O12) based on low-temperature calorimetry and magnetic susceptibility measurements

The low-temperature heat capacity of knorringite garnet (Mg 3 Cr 2 Si 3 O 12 ) was measured between 2 and 300 K, and thermochemical functions were derived from the results. The measured heat capacity curves show a sharp lambda-shaped anomaly peaking at around 5.1 K. Magnetic susceptibility data show...

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Veröffentlicht in:Physics and chemistry of minerals 2014-05, Vol.41 (5), p.341-346
Hauptverfasser: Wijbrans, C. H., Niehaus, O., Rohrbach, A., Pöttgen, R., Klemme, S.
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Sprache:eng
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Zusammenfassung:The low-temperature heat capacity of knorringite garnet (Mg 3 Cr 2 Si 3 O 12 ) was measured between 2 and 300 K, and thermochemical functions were derived from the results. The measured heat capacity curves show a sharp lambda-shaped anomaly peaking at around 5.1 K. Magnetic susceptibility data show that the transition is caused by antiferromagnetic ordering. From the C p data, we suggest a standard entropy (298.15 K) of 301 ± 2.5 J mol −1  K −1 for Mg 3 Cr 2 Si 3 O 12 . The new data are also used in conjunction with previous experimental results to constrain ∆ H f ° for knorringite.
ISSN:0342-1791
1432-2021
DOI:10.1007/s00269-013-0653-x