Skutterudite thermoelectric material thermoelectric couple and method of producing the same
First Claim
1. A thermoelectric material using a skutterudite thermoelectric material being a sintered material which comprises the crystal grains of a Sb-containing skutterudite compound and a metal oxide dispersed between the grain boundaries thereof, wherein the crystals of said skutterudite compound are formed of a CoSb3-based compound mainly composed of Co and Sb, and the crystals of the CoSb3-based compound include a transition metal other than Co-group metals.
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Abstract
The present invention relates to a skutterudite thermoelectric material for directly converting heat generated by the Seebeck effect into electricity, and provides a method of producing a Co—Sb-based filled-skutterudite sintered material having a lower thermal conductivity and thereby having a higher figure of merit. The crystal grains of a Sb-containing skutterudite compound and a metal oxide dispersed in the crystal grain boundaries are sintered to obtain the skutterudite thermoelectric sintered material. The metal oxide prevents growth of grains in the process of sintering, whereby the skutterudite compound is finely pulverized to have an average crystal grain size of 20 μm or less. As a result, the areas at the boundaries of the fine crystal grains are increased, phonon scattering is enhanced, the thermal conductivity is decreased, and the figure of merit is increased. The metal oxide is an oxide of a rare earth metal. The skutterudite compound includes a filled-skutterudite compound having a composition of LnyFexCo4−xSb12 (Ln: a rare earth metal, 0<x≦4, 0<y≦1).
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Citations
16 Claims
- 1. A thermoelectric material using a skutterudite thermoelectric material being a sintered material which comprises the crystal grains of a Sb-containing skutterudite compound and a metal oxide dispersed between the grain boundaries thereof, wherein the crystals of said skutterudite compound are formed of a CoSb3-based compound mainly composed of Co and Sb, and the crystals of the CoSb3-based compound include a transition metal other than Co-group metals.
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6. A filled-skutterudite thermoelectric material having a composition ratio of LnyFexM4−
- xSb12 wherein Ln is a rare earth metal, 1≦
x≦
4, 0≦
y≦
1, wherein M is Ni, Pd or Pt. - View Dependent Claims (7)
- xSb12 wherein Ln is a rare earth metal, 1≦
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8. A method of producing a skutterudite thermoelectric material comprising crystals of a Sb-containing skutterudite compound, wherein the thermoelectric material is sintered from a mixed powder comprising said skutterudite compound or the ingredients thereof and a metal oxide, to disperse the metal oxide in the crystal grain boundaries thereof, wherein said Sb-containing skutterudite compound is a filled-skutterudite compound having a composition of LnyFexCo4−
- xSb12 wherein Lny is a rare earth metal, 0≦
x≦
4, 9<
y≦
1), and said mixed powder is obtained by carrying out precipitation from an aqueous solution including metals to disperse a precipitate including said metals to the powder of said skutterudite compound, and by heating and decomposing said precipitate to disperse a metal oxide to the powder of said compound.
- xSb12 wherein Lny is a rare earth metal, 0≦
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9. A method of producing a skutterudite thermoelectric material comprising crystals of a Sb-containing skutterudite compound, wherein the thermoelectric material is sintered from a mixed powder comprising said skutterudite compound or the ingredients thereof and a metal oxide, to disperse the metal oxide in the crystal grain boundaries thereof, wherein said Sb-containing skutterudite compound is a filled-skutterudite compound having a composition of LnyFexCo4−
- xSb12 wherein Lny is a rare earth metal, 0<
x≦
4, 0<
y≦
1), and the crystals of said skutterudite compound are formed of a CoSb3-based compound mainly composed of Co and Sb, said mixed powder comprises the crystals of said skutterudite compound and a transition metal other than a Co-group metal, and said mixed powder is sintered. - View Dependent Claims (10, 11, 12, 13)
- xSb12 wherein Lny is a rare earth metal, 0<
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16. A method of producing a thermoelectric couple having a p-n junction by sintering, comprising joining a formed layer of a mixed raw material powder of a p-type filled Sb-containing skutterudite thermoelectric material with a formed layer of a mixed raw material powder of an n-type filled Sb-containing skutterudite thermoelectric material under pressure application, and integrally sintering said layers, wherein said raw material mixed powder is the mixed powder of a skutterudite compound or the ingredients thereof and a metal oxide, comprising the crystals of said Sb-containing skutterudite compound and a metal oxide dispersed in the crystal grain boundaries thereof, and said mixed powder is obtained by carrying out precipitation from an aqueous solution including metals to disperse a precipitate including said metals to the powder of said skutterudite compound, and by heating and decomposing said precipitate to disperse a metal oxide to the powder of said compound.
Specification