期刊文献+

Nanostructuring and Thermoelectric Properties of Bulk N-type Mg_2Si

Nanostructuring and Thermoelectric Properties of Bulk N-type Mg_2Si
下载PDF
导出
摘要 Preparation and thermoelectric properties of nanostructured n-type Mg2Si bulk materials were reported. Nanosized Mg2Si powder was obtained by mechanical milling of the microsized Mg2Si powder prepared by solid-state reaction. The bulk materials with 30 nm and 5 μm were prepared by spark plasma sintering of the nanosized and microsized Mg2Si powder, respectively. Both the samples show n-type conduction and the Seebeck coefficient of the sintered samples increase determinately with the grain size decrease from 5 μm to 30 nm. On the other hand, the electrical and thermal conductivity decrease with the decrease of grain size. Accordingly, decreasing their grain size increases their thermoelectric-figure-of-merit. A maximum thermoelectric figure of merit of 0.36 has been obtained for the nanostuctured Mg2Si sample at 823 K, which is 38% higher than that of microsized Mg2Si bulk materials and higher than results of other literatures. It could be expected that the properties of the nanocomposites could be further improved by doping optimization. Preparation and thermoelectric properties of nanostructured n-type Mg2Si bulk materials were reported. Nanosized Mg2Si powder was obtained by mechanical milling of the microsized Mg2Si powder prepared by solid-state reaction. The bulk materials with 30 nm and 5 μm were prepared by spark plasma sintering of the nanosized and microsized Mg2Si powder, respectively. Both the samples show n-type conduction and the Seebeck coefficient of the sintered samples increase determinately with the grain size decrease from 5 μm to 30 nm. On the other hand, the electrical and thermal conductivity decrease with the decrease of grain size. Accordingly, decreasing their grain size increases their thermoelectric-figure-of-merit. A maximum thermoelectric figure of merit of 0.36 has been obtained for the nanostuctured Mg2Si sample at 823 K, which is 38% higher than that of microsized Mg2Si bulk materials and higher than results of other literatures. It could be expected that the properties of the nanocomposites could be further improved by doping optimization.
作者 杨梅君
出处 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2009年第6期912-916,共5页 武汉理工大学学报(材料科学英文版)
基金 Funded by the National Basic Research Program of China (2007CB607501)
关键词 semiconductor thermoelectric effects MG2SI NANOSTRUCTURING semiconductor thermoelectric effects Mg2Si nanostructuring
  • 相关文献

参考文献10

  • 1Joseph P H,Christopher M T,Donald T M.Ther- mopower Enhancement in Lead Telluride Nanostructures[].Physical Review.2004
  • 2Bhandari C M.Thermoelectric Transport Theory[].CRC Handbook of Thermoelectrics.
  • 3Bhandari C M.Minimizing the Thermal Conductivity[].CRC Handbook of Thermoelectrics.
  • 4Jiang H Y.Study on the Solid-state Reaction Synthesis, Prepa- ration and Thermoelectric Properties of Mg-Si Based Com- pounds[]..2003
  • 5Jun-ichi T,Hiroyasu K.Thermoelectric Properties of Sb-doped Mg2Si Semiconductors[].Intermetallics.2007
  • 6Zhang L M,Gang Y G.Synthesis of Mg2Si1-xGex Thermoe- lectric Compound by Solid Phase Reaction[].MaterSci EngB.2001
  • 7Yoshinaga M,Iida T,Noda M,et al.Bulk crystal growth of Mg2 Si by the vertical Bridgman method[].Thin Solid films.2004
  • 8Heremans J.P,Thrush C.M,and Morelli D.T.Thermopower enhancement in PbTe with Pb precipitates[].Journal of Applied Physics.2005
  • 9J. Martin,G. S. Nolas,W. Zhang,L. Chen.PbTe nanocomposites synthesized from PbTe nanocrystals[].Applied Physics Letters.2007
  • 10Mi J.L.,Zhao,X.B,,Zhu T.J.,Tu J.P.Improved thermoelectric figure of merit in n-type CoSb3 based nanocomposites[].Applied Physics Letters.2007

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部