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Synthesis and Thermoelectric Properties of AgIn Codoped (AgIn)xPb1-2xTe Compounds

Liu Haijun, Yan Yonggao, Tang Xinfeng, Yin Lingling and Zhang Qingjie

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Abstract: Single-phase n-type (AgIn)xPb1-2xTe compounds were synthesized using the melting reaction method.Influences of (AgIn) substituting for Pb on the constituent phases and thermoelectric properties of the (AgIn)xPb1-2xTe(x=0.01~0.05) were investigated.Results indicate that single phase compound is obtained when the (AgIn) substitution fraction x≤0.04.However,the second phase (AgInTe2) was observed in the sample withx=0.05.The Seebeck coefficient increases gradually with the increasing of the (AgIn) substitution fraction x,and the electrical conductivity of the compounds decreases with the increasing of x.Thermal conductivity decreases with the increasing of x.In all of the n-type (AgIn)xPb1-2xTe compounds,(AgIn)0.01Pb0.98Te compound has the greatest ZT value,reaching 1.1 at 800K.

Key words: (AgIn)xPb1-2xTesynthesisthermoelectric properties

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    Received: 18 August 2015 Revised: 28 November 2006 Online: Published: 01 May 2007

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      Liu Haijun, Yan Yonggao, Tang Xinfeng, Yin Lingling, Zhang Qingjie. Synthesis and Thermoelectric Properties of AgIn Codoped (AgIn)xPb1-2xTe Compounds[J]. Journal of Semiconductors, 2007, In Press. Liu H J, Yan Y G, Tang X F, Yin L L, Zhang Q J. Synthesis and Thermoelectric Properties of AgIn Codoped (AgIn)xPb1-2xTe Compounds[J]. Chin. J. Semicond., 2007, 28(5): 705.Export: BibTex EndNote
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      Liu Haijun, Yan Yonggao, Tang Xinfeng, Yin Lingling, Zhang Qingjie. Synthesis and Thermoelectric Properties of AgIn Codoped (AgIn)xPb1-2xTe Compounds[J]. Journal of Semiconductors, 2007, In Press.

      Liu H J, Yan Y G, Tang X F, Yin L L, Zhang Q J. Synthesis and Thermoelectric Properties of AgIn Codoped (AgIn)xPb1-2xTe Compounds[J]. Chin. J. Semicond., 2007, 28(5): 705.
      Export: BibTex EndNote

      Synthesis and Thermoelectric Properties of AgIn Codoped (AgIn)xPb1-2xTe Compounds

      • Received Date: 2015-08-18
      • Accepted Date: 2006-10-29
      • Revised Date: 2006-11-28
      • Published Date: 2007-04-29

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