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METHODS AND COMPOSITIONS FOR INCREASED THERMOELECTRIC OXIDE CERAMIC PERFORMANCE
In one aspect, the present disclosure relates to doped thermoelectric oxide ceramic compositions comprising stable cerium oxide nanoinclusions. In a further aspect, the thermoelectric oxide ceramic compositions comprise calcium cobaltite ceramic with a dopant, such as bismuth. The disclosed doped thermoelectric ceramic oxide compositions comprising ceramic oxide nanoinclusions have reduced thermal conductivity and an increased energy conversion efficiency as compared to a conventional doped thermoelectric oxide ceramic material without cerium oxide nanoninclusions. Also disclosed herein are methods for making the doped thermoelectric ceramic oxide compositions.
METHODS AND COMPOSITIONS FOR INCREASED THERMOELECTRIC OXIDE CERAMIC PERFORMANCE
In one aspect, the present disclosure relates to doped thermoelectric oxide ceramic compositions comprising stable cerium oxide nanoinclusions. In a further aspect, the thermoelectric oxide ceramic compositions comprise calcium cobaltite ceramic with a dopant, such as bismuth. The disclosed doped thermoelectric ceramic oxide compositions comprising ceramic oxide nanoinclusions have reduced thermal conductivity and an increased energy conversion efficiency as compared to a conventional doped thermoelectric oxide ceramic material without cerium oxide nanoninclusions. Also disclosed herein are methods for making the doped thermoelectric ceramic oxide compositions.
METHODS AND COMPOSITIONS FOR INCREASED THERMOELECTRIC OXIDE CERAMIC PERFORMANCE
SONG XUEYAN (author) / ROMO-DE-LA-CRUZ CESAR-OCTAVIO (author) / GAUNEAU GEOFFROY (author) / LIANG LIANG (author) / CHEN YUN (author)
2024-04-25
Patent
Electronic Resource
English
IPC:
C04B
Kalk
,
LIME
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