中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Enhanced high temperature thermoelectric characteristics of transition metals doped Ca(3)Co(4)O(9+delta) by cold high-pressure fabrication

文献类型:期刊论文

作者Y. Wang ; Y. Sui ; X. J. Wang ; W. H. Su ; X. Y. Liu
刊名Journal of Applied Physics
出版日期2010
卷号107期号:3
关键词Boltzmann equation calcium compounds compaction copper density doping high-pressure techniques iron manganese texture thermoelectric power transport-properties single-crystal performance thermopower na substitution resistivity antimonides electron behavior
ISSN号0021-8979
中文摘要A series of Fe, Mn, and Cu doped Ca(3)Co(4)O(9+delta) samples, Ca(3)(Co,M)(4)O(9+delta) (M=Fe, Mn, and Cu), were fabricated by cold high-pressure compacting technique. Their thermoelectric properties were investigated from room temperature up to 1000 K. The cold high-pressure compacting method is advantageous to increasing density and texture, in favor of the improvement of thermoelectric performance. The electrical transport measurements indicate that Fe/Mn substitutes for Co mainly in [CoO(2)] layers whereas the substitution of Cu for Co takes place in [Ca(2)CoO(3)] layers. The thermoelectric properties as well as electronic correlations depend not only on the substitution ion but also the Co site that is replaced. Thermopower can be well calculated by the carrier effective mass according to Boltzmann transport model, indicating that the electronic correlation plays a crucial role in the unusual thermoelectric characteristics of this system. From the changes in thermopower, resistivity, and thermal conductivity, thermoelectric performance of Ca(3)Co(4)O(9+delta) is efficiently improved by these transition metals doping. Fe doped samples possess the highest ZT values. Combining cold high-pressure technique, ZT of Ca(3)Co(3.9)Fe(0.1)O(9+delta) can reach similar to 0.4 at 1000 K, which is quite large among ceramic oxides, suggesting that Fe doped Ca(3)Co(4)O(9+delta) could be a promising candidate for thermoelectric applications at elevated temperatures.
原文出处://WOS:000274517300052
公开日期2012-04-13
源URL[http://210.72.142.130/handle/321006/31542]  
专题金属研究所_中国科学院金属研究所
推荐引用方式
GB/T 7714
Y. Wang,Y. Sui,X. J. Wang,et al. Enhanced high temperature thermoelectric characteristics of transition metals doped Ca(3)Co(4)O(9+delta) by cold high-pressure fabrication[J]. Journal of Applied Physics,2010,107(3).
APA Y. Wang,Y. Sui,X. J. Wang,W. H. Su,&X. Y. Liu.(2010).Enhanced high temperature thermoelectric characteristics of transition metals doped Ca(3)Co(4)O(9+delta) by cold high-pressure fabrication.Journal of Applied Physics,107(3).
MLA Y. Wang,et al."Enhanced high temperature thermoelectric characteristics of transition metals doped Ca(3)Co(4)O(9+delta) by cold high-pressure fabrication".Journal of Applied Physics 107.3(2010).

入库方式: OAI收割

来源:金属研究所

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