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CaMnO_3热电材料的低温烧结研究 被引量:1

Study on the Low-temperature Sintering of Thermoelectric Material CaMnO_3
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摘要 采用固相反应法制备CaMnO3粉末,加入Bi2O3混合、压块后,在900℃烧结12h得到样品,并对样品的物相、组织和热电性能进行了测试分析。结果表明:制备出的热电材料是单相的CaMnO3,加入Bi2O3后没有形成可观测的第二相;随着Bi2O3加入量的增加,样品的平均电导率增大,温差电势减小;平均电导率随温度的增加而增加,呈半导体特性,温差电势随温度的增加而增大;加入Bi2O3促进了烧结,降低了烧结温度,改善了材料的热电性能。 Abstract: It is Proposed to fabricate a thermoelectric generator with P - N structure by sintering the N - type CaMnO3 together with the P - type Ca3Co4O9 directly. It is necessary to sinter CaMnO3 ceramic below the phase transition temperature of Ca3Co4O9,926℃. In this paper, CaMnO3 powder wsa synthesized using the solid reaction method, then mixed with Bi2O3 and pressed into pellet. Sintering was carried out in air at 900℃ for 12h. The microstructure and thermoelectric properties of prepared sample were also investigated. As a result, there was no detectable secondary phase caused by additional Bi2O3; the average electrical conductivity increased and the approximate Seebeck coefficient decreased with increasing adding of Bi2O3 ; the average electrical conductivity and the approximate Seebeck coefficient increased with increasing temperature. The addition of Bi2O3 promoted the sintering process and decreased the sintering temperature, and effectively improved the thermoelectric properties of CaMnO3 sample as well.
出处 《西华大学学报(自然科学版)》 CAS 2012年第6期16-19,共4页 Journal of Xihua University:Natural Science Edition
基金 教育部春晖计划项目(Z2011076)
关键词 CaMnO3 BI2O3 热电陶瓷 低温烧结 CaMnO3 Bi2O3 thermoelectric ceramic low-temperature sintering
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参考文献18

  • 1Rowe D. Thermoelectrics Handbook:Macro to nano[M].CRC Press,Inc,2006.
  • 2Weidenkaff A,Robert R,AgIlirre M. Development of Thermoelectric Oxides for Renewable Energy Conversion Technologies[J].Renewable Energy,2008,(02):342-347.doi:10.1016/j.renene.2007.05.032.
  • 3Boskovic S,Dukic J,Matovic B. Nanopowders Properties and Sintering of CaMnO3 Solid Solutions[J].Journal of Alloys and Compounds,2008.282-287.
  • 4Park J W,Kwak D H,Yoon S H. Thermoelectric Properties of Bi,Nb co-substituted CaMnO3 at High Temperature[J].Journal of Alloys and Compounds,2009,(1-2):550-555.
  • 5Zhang F P,Lu Q M,Zhang X. First Principle Investigation of Electronic Structure of CaMnO3 Thermoelectric Compound Oxide[J].Journal of Alloys and Compounds,2011,(02):542-545.
  • 6Huang X Y,Miyazaki Y,Kajitani T. High Temperature Thermoelectric Properties of Cal-xBixMnl-yV yO3-[delta],(0 《 =x =y《 =0.08)[J].Solid State Communications,2008,(03):132-136.doi:10.1016/j.ssc.2007.10.012.
  • 7Urata S,Funahashi R,Mihara T. Power Generation of p-type Ca3CO4O9/n-type CaMnO3 Modulep[A].2006.501-504.
  • 8Noudem J G,Lemonnier S,Prevel M. Thermoelectric Ceramics for Generators[J].Journal of the European Ceramic Society,2008,(01):41-48.
  • 9Shin W,Murayama N,Ikeda K. Thermoelectric Power Generation using Li-doped NiO and (Ba,St) PbO3 Module[J].Journal of Power Sources,2001,(01):80-85.
  • 10Lemonnier S,Goupil C,Noudem J. Four-leg Cao.955m0.05MnO3 Unileg Thermoelectric Device[J].Journal of Applied Physics,2008.014501-014504.

二级参考文献12

  • 1宋瑞银,李伟,杨灿军.微小型液体燃料热电电源的性能测试分析[J].仪器仪表学报,2006,27(z1):77-79. 被引量:1
  • 2夏天,伍小生,尹小根,何俊佳.便携式蓄电池内阻测试仪的研制[J].电源技术,2007,31(1):49-52. 被引量:16
  • 3江海,李革臣,苏淇桂,李金录.基于MSP 430单片机的便携式电池内阻测试仪[J].电源技术,2007,31(7):548-550. 被引量:10
  • 4Rowe D. Thermoelectrics handbook: Macro to nano[M]. BocaRaton, FL: CRC Press, 2006.
  • 5Rowe D. CRC handbook of thermoelectfics [ M ]. Boca Raton, FL: CRC Press, 1995.
  • 6ROWE D. Thermoelectrics handbook: macro to nano [M]. United States: CRC Press, 2006.
  • 7FUJIMOTO S, KA1BE H, SANO S, et al. Development of transient measurement method for investigating thermoelectric properties in high temperature region [J]. Japanese Jouma of Applied Physics, 2006, 45(11): 8805-8809.
  • 8AHISKA R, DISLITAS S.Computer controlled test system for mea- suring the parameters of the real thermoelectric module[J]. Energy Conversion and Management, 2011,52( 1 ): 27-36.
  • 9CIYLAN B, YILMAZ S. Design of a thermoelectric module test system using a novel test method[J].Intemational Journal of Thermal Sciences, 2007, 46(7): 717-725.
  • 10徐晓东,刘洪文,杨权.锂离子电池内阻测试方法研究[J].中国测试,2010,36(6):24-26. 被引量:34

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同被引文献16

  • 1Xuan X C,Ng K C,Yap C,et al.A general model for studying effects of interface layers on thermoelectric devices performance[J].International Journal of Heat and Mass Transfer,2002,45:5159-5170.
  • 2Urata S,Funahashi R,Mihara T.Power generation of p-type Ca3Co4O9/n-type Ca Mn O3module[C]//25th International Conference on Thermoelectrics.[S.1]:IEEE,2006(4):501-504.
  • 3Boskovic S,Dukic J,Matovic B,et a1.Nanopowders properties and sintering of Ca Mn O3solid solutions[J].J Alloys Comp,2008,463:282-287.
  • 4Zhou Q,Brendan D,Kennedy.Thermal expansion and structure of orthorhombi-c Ca Mn O3[J].Journal of Physics and Chemistry of Solids,2006,67(7):1595-1598.
  • 5Park J W,Kwak D H,Yoon S H,et al.Thermoelectric properties of Bi,Nb co-substituted Ca Mn O3at high temperature[J].Journal of Alloys and Compounds,2009,487(1-2):550-555.
  • 6Isasi P H,Lopes M E,Nunes M R,et al.Low-temperature synthesis of nanocrystalline Ca1?xHoxMn O3-δ(0≤x≤0.3)powders[J].Journal of Physics and Chemistry of Solids,2009,70:405-411.
  • 7Michitaka ohtaki,Hisako Koga,Tsutomu Tokunaga,et al.Electrical transport properties and high-temperature thermoelectric performance of(Ca0.9M0.1)Mn O3(M=Y,La,Ce,Sm,In,Sn,Sb,Pb,Bi)[J].Journal of solid state chemistry,1995,120:105-111.
  • 8Cong B T,Tsuji T,Thao P X,et al.High-temperature thermoelectric properties of Ca1?xPrxMn O3-δ(0<x<1)[J].Physica B,2004,352:18.
  • 9Park J W,Kwak D H,Yoon S H,et al.Thermoelectric properties of Bi,Nb co-substituted Ca Mn O3at high temperature[J].Journal of Alloys and Compounds,2009,487:550-555.
  • 10Miclau M,Herbert S,Retoux R,et al.Influence of A-site cation size on structural and physical properties in Ca1?xSrxMn0.96Mo0.04O3:A comparison of the x=0.3 and 0.6 compounds[J].Solid State Chem,2005,178:1104.

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