欢迎登录材料期刊网

材料期刊网

高级检索

近年来,由于热电氧化物具有优良的性能,适合于在空气气氛和高温环境中工作,无毒性,无环境污染等问题,制作简单,可以直接在空气中烧结,不需真空等优点,而受到了广泛的关注.对热电氧化物的各种制备方法进行了概述和评论,重点介绍了热电氧化物新的制备方法及其性能研究进展,并对未来发展前景进行了分析,通过掺杂碱金属、碱土金属和稀土等元素提高氧化物的电导率,细化晶粒降低热导率,从而制备高性能的热电氧化物陶瓷材料.

参考文献

[1] Moon JW.;Seo WS.;Koumoto K.;Masuda Y. .Influence of ionic size of rare-earth site on the thermoelectric properties of RCoO3-type perovskite cobalt oxides[J].Materials Science & Engineering, B. Solid-State Materials for Advanced Technology,2001(1):70-75.
[2] Moon J W;Masuda Y;Koumoto K et al.Ca-doped HoCoO3 as p-type oxide thermoelectric material[J].Materials Letters,2001,48:225.
[3] Funahashi R.;Sodeoka S.;Matsubara I. .Thermoelectric properties of Bi2Sr2Co2Ox polycrystalline materials[J].Applied physics letters,2000(17):2385-2387.
[4] Itoh M;Nagawatari M .59Co NMR study of two-dimensional cobalt oxide with large thermoelectric power NaCo2O4[J].Journal of Physics B:Atomic Molecular and Optical Physics,2000,281-282:516.
[5] Kurosaki K.;Uno M.;Yamanka S.;Muta H. .Thermoelectric properties of NaCo2O4[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2001(1/2):234-236.
[6] Tajima S;Tani T;Isobe S et al.Thermoelectric properties of highly textured NaCo2O4 ceramics processed by the reactive templated grain growth (RTGG) method[J].Materials Science and Engineering,2001,B86:20.
[7] Takahata K;Iguchi Y;Tanaka D et al.Low thermal conductivity of the layered oxide (Na, Ca)Co2O4: another example of a phonon glass and an electron crystal[J].Physical Review B,2000,61(19):12551.
[8] Terasaki I.;Uchinokura K.;Sasago Y. .LARGE THERMOELECTRIC POWER IN NACO2O4 SINGLE CRYSTALS[J].Physical Review.B.Condensed Matter,1997(20):12685-12687.
[9] Li SW.;Matsubara I.;Sodeoka S.;Funahashi R. .Magnetic and thermoelectric properties of NaCo2-xMxO4 (M = Mn, Ru)[J].Materials Research Bulletin: An International Journal Reporting Research on Crystal Growth and Materials Preparation and Characterization,2000(14/15):2371-2378.
[10] Li S W;Funahashi R;Matsubara I et al.Synthesis and thermoelectric properties of the new oxide materials Ca3-x BixCo4O9[J].Chemistry of Materials,2000,12:2424.
[11] Matsubara I.;Takeuchi T.;Sodeoka S.;Funahashi R. .Thermoelectric properties of spark plasma sintered Ca2.75Gd0.25Co4O9 ceramics[J].Journal of Applied Physics,2001(1):462-465.
[12] NAN J;WuJB;ZhouXS.Thermoeloetric properties of Ca3Co4O9-based polycrystalline oxides[A].,2001:207.
[13] NAN J;Wu J B;Deng Y et al.Synthesis and thermoelectric properties of (NaxCa1-x)Co4O9 ceramics[J].Journal of the European Ceramic Society,2003,23(06):859.
[14] Xu GJ.;Funahashi R.;Shikano M.;Pu QR.;Liu B. .High temperature transport properties of Ca3-xNaxCo4O9 system[J].Solid State Communications,2002(3):73-76.
[15] Li S W;Funahashi R;Matsubara Ichiro et al.Synthesis and thermoelectric properties of the new oxide ceramics Ca3-xSrx Co4O9+δ(x =0.0~ 1.0)[J].Ceramics International,2001,27:321.
[16] Miyazaki Y.;Akoshima M.;Ono Y.;Koike Y.;Kajitani T.;Kudo K. .Low-temperature thermoelectric properties of the composite crystal [Ca2CoO3.34](0.614)[CoO2][J].Japanese journal of applied physics,2000(6A):L531-L533.
[17] Li S W;Funahashi R;Matsubara I.High temperature thermoelectric properties of oxide Ca9Co12 O28[J].Journal of Materials Chemistry,1999(09):1659.
[18] Cheng S L;An J M;Cai K F.Chemical synthesis of Ca9Co12O2s and thermoelectric power[A].,2001:205.
[19] Li S.;Matsubara I.;Ueno K.;Sodeoka S.;Yamada H.;Funahashi R. .Thermoelectric properties of oxides Ca2Co2O5 with Bi substitution[J].Journal of Materials Science Letters,2000(15):1339-1341.
[20] Funahashi R.;Ikuta H.;Takeuchi T.;Mizutani U.;Sodeoka S.;Matsubara I. .An oxide single crystal with high thermoelectric performance in air[J].Japanese journal of applied physics,2000(11B):L1127-L1129.
[21] Tomoya Nagira;Mikio Ito;Shigeru Katsuyama .Thermoelectric Properties of Na_xCo_2O_4 Prepared by the Polymerized Complex Method and Hot-Pressing[J].Materials transactions,2003(1):155-160.
[22] Ito M;Nagira T;Furumoto D et al.Synthesis of NaxCo2O4thermoelectric oxides by the polymerized complex method[J].Scripta Materialia,2003,48:403.
[23] Muta H;Kurosaki K;Uno M et al.Thermoelectric properties of Ti- and Sn-doped α-Fe2O3[J].Journal of Alloys and Compounds,2002,335:200.
[24] Zhou Y Q;Matsubara I;Fanahashi R et al.High temperature thermoelectric properties of (Ca, Ce)4Mn3Oi0[J].Materials Research Bulletin,2002,37:1123.
[25] Ohtaki M;Koga H;Tokunaga T et al.Electrical transport properties and high-temperature thermoelectric performance of (Ca0.9M0.1)MnO3(M = Y, La, Ce, Sm, In, Sn, Sb, Pb, Bi)[J].Journal of Solid State Chemistry,1995,120:105.
[26] NasirK;KimH;MinamiH et al.Thermoelectric properties of niobium doped hexagonal barium titanate[J].Materials Letters,2001,47:95.
[27] Shin W;Murayama N .High performance p-type thermoelectric oxide based on NiO[J].Materials Letters,2000,45:302.
[28] Zhou Y;Matsubara I;Funahashi R et al.Thermoelectric properties of Ln2-xBixRu2O7 yrochlores(Ln = Nd and Yb)[J].Materials Letters,2001,51:347.
[29] Isawa K.;Nagano M. .Synthesis and physical properties of niobium-based oxide, Sr2-xLaxNbO4 (0 <= x < 0.2)[J].Physica, C. Superconductivity and its applications,2001(Pt.1):359-362.
[30] Kurosaki K;Matsuda T;Uno M et al.Thermoelectric properties of BaUO3[J].Journal of Alloys and Compounds,2001,319:271.
[31] Koumoto K;Seo W;Ozawa S .Huge thermopower of porous Y2O3[J].Applied Physics Letters,1997,71(11):1475.
[32] Koumoto K;Seo W;Ozawa S.Huge thermoelectromotive force generated by porous ceramics of Y2O3[A].,1997:467.
[33] Tsubota T.;Eguchi K.;Arai H.;Ohtaki M. .Transport properties and thermoelectric performance of (Zn1-yMgy)(1-x)AlxO[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,1998(2):409-412.
[34] Tsubota T;Ohtaki M;Eguchi K et al.High-temperrature Thermoelectric Properties of (Zn1-x Alx) O[J].Journal of Applied Physics,1996,79(03):1816.
[35] Tsubota T;Ohtaki M;Eguchi K et al.Thermoelectric properties of Al-doped ZnO as a promising oxide material for high-temperature thermoelectric conversion[J].Journal of Materials Chemistry,1997,7(01):85.
[36] Kazeoka M.;Seo WS.;Koumoto K.;Hiramatsu H. .Improvement in thermoelectric properties of (ZnO)(5)In2O3 through partial substitution of yttrium for indium[J].Journal of Materials Research,1998(3):523-526.
[37] Ohtaki M;Ogura D;Eguchi K et al.High-temperature thermoelectric properties of In2O3-based mixed oxides and their applicability to thermoelectric power gemeration[J].Journal of Materials Chemistry,1994,4(05):653.
[38] Shin W;Murayama N .High temperature thermoelectric properties of Sr1-xLaxPbO3[J].Materials Letters,2001,51:351.
[39] Yasukawa M;Murayama N .A promising oxide material for high-temperature thermoelectric conversion: Ba1 -xSrx PbO3 solid solution system[J].Materials Science and Engineering,1998,B54:64.
[40] Yasukawa M;Murayama N .High temperature thermoelectric properties of the oxide material: Ba1-xSrxPbO3 (x = 0~0.6)[J].Journal of Materials Science Letters,1997,16:1731.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%