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热电材料是一种能将电能与热能相互转换的功能材料,近年来备受关注.从块体热电材料、低维热电材料、热电器件及其应用等方面综述了热电材料研究的最新进展,并展望了今后的发展方向.

参考文献

[1] Disalvo F J .Thermoelectric cooling and power generation[J].Science,1999,285:703.
[2] Parrott J E .Transport theory of semiconductor energy conversion[J].Journal of Applied Physics,1982,53(12):9105.
[3] Joseph R. Sootsman;Duck Young Chung;Mercouri G. Kanatzidis .New and Old Concepts in Thermoelectric Materials[J].Angewandte Chemie,2009(46):8616-8639.
[4] Sales BC.;Chakoumakos BC.;Keppens V.;Thompson JR.;Mandrus D. .FILLED SKUTTERUDITE ANTIMONIDES - ELECTRON CRYSTALS AND PHONON GLASSES[J].Physical Review.B.Condensed Matter,1997(23):15081-15089.
[5] MICHAEL MAREK KOZA;MARK ROBERT JOHNSON;ROMAIN VIENNOIS .Breakdown of phonon glass paradigm in La- and Ce-filled Fe4Sb_(12) skutterudites[J].Nature materials,2008(10):805-810.
[6] Shi X et al.Low thermal conductivity and high thermoelectric figure of merit in n-type BaxYbyCo4Sb12 double-filled skutterudites[J].Applied Physics Letters,2008,92:182101.
[7] Bai S Q et al.Lattice thermal transport in BaxREyCo4Sb12 (RE=Ce,Yb,and Eu) double-filled skutterudites[J].Applied Physics Letters,2010,96:202102.
[8] Tang Xinfeng et al.High temperature thermoelectric'transport properties of double-atom-filled clathrate compounds Ybx Ba8-x Ga16Ge30[J].Journal of Applied Physics,2008,104:013706.
[9] Kim J H.High thermoelectric performance of type-Ⅲ clathrate compounds in the Ba-Ge-Ga system[J].Acta Mafer,2006:54,2057.
[10] Sung-Wng Kim;Yoshisato Kimura;Yoshinao Mishima .High temperature thermoelectric properties of TiNiSn-based half-Heusler compounds[J].Intermetallics,2007(3):349-356.
[11] Sakurada S;Shutoh N .Effect of Ti substitution on the thermoelectric properties of (Zr,Hf)NiSn half-Heusler compounds[J].Applied physics letters,2005(8):2105-1-2105-3-0.
[12] Terasaki I.;Uchinokura K.;Sasago Y. .LARGE THERMOELECTRIC POWER IN NACO2O4 SINGLE CRYSTALS[J].Physical Review.B.Condensed Matter,1997(20):12685-12687.
[13] 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.
[14] Kuei Fang Hsu et al.Cubic AgPbmSbTe2+m:Bulk thermoelectric materials with high figure of merit[J].Science,2004,303:818.
[15] Eric Quarez et al.Nanostructuring compositional fluctuations and atomic ordering in the thermoelectric materials AgPhmSbTe2+m The myth of solid solutions[J].Journal of the American Chemical Society,2005,127(25):9177.
[16] TIMOTHY P. HOGAN;ADAM DOWNEY;JARROD SHORT;JONATHAN D'ANGELO;CHUN-I WU;ERIC QUAREZ;JOHN ANDROULAKIS;PIERRE F.P. POUDEU;JOSEPH R. SOOTSMAN;DUCK-YOUNG CHUNG;MERCOURI G. KANATZIDIS;S.D. MAHANTI;EDWARD J. TIMM;HAROLD SCHOCK;FEI REN;JASON JOHNSON;ELDON D. CASE .Nanostructured Thermoelectric Materials and High-Efficiency Power-Generation Modules[J].Journal of Electronic Materials,2007(7):704-710.
[17] Sootsman J R;Pcioneket R J et al.Strong reduction of thermal conductivity in nanostructured PbTe prepared by matrix encapsulation[J].Chemistry of Materials,2006,18:4993.
[18] Gueguen A;Poudeu P F P;Li C P et al.Thermoelectric properties and nanostructuring in the p-type materials NaPb18-xSnx-MTe20 (M=Sb,Bi)[J].Chemistry of Materials,2009,21:1683.
[19] Wu Jin et al.Fabrication of Ag-Sn-Sb-Te based thermoelectric materials by MA-PAS and their properties[J].Journal of Alloys and Compounds,2010,507:167.
[20] Catalin Chiritescu;David G. Cahill;Ngoc Nguyen;David Johnson;Arun Bodapati;Pawel Keblinski;Paul Zschack .Ultra low Thermal Conductivity in Disordered, Layered WSe_2 Crystals[J].Science,2007(5810):351-353.
[21] Rhyee Jong-Soo et al.Peierls distortion as a route to high thermoelectric performance in In4 Se3-δ crystals[J].Nature,2009,459:965.
[22] Rhyee Jong-Soo et al.Thermoelectric properties and aniso-tropic electronic band structure on the In4 Se3-x compounds[J].Applied Physics Letters,2009,95:212106.
[23] Mildred S Dresselhaus.New directions for low-dimensional thermoelectric materials[J].Advanced Materials,2007:1911043.
[24] Hicks;Dresselhaus .Effect of quantum-weU structures on the thermoelectrie figure of merit[J].Physical Review B,1993,47:12727.
[25] T.C.HARMAN;M.P.WALSH;B.E.LAFORGE;G.W.TURNER .Nanostructured Thermoelectric Materials[J].Journal of Electronic Materials,2005(5):L19-L22.
[26] HIROMICHI OHTA;SUNGWNG KIM;YORIKO MUNE .Giant thermoelectric Seebeck coefficient of a two-dimensional electron gas in SrTiO_3[J].Nature materials,2007(2):129-134.
[27] Akram I Boukai et al.Silicon nanowires as efficient thermoelectric materials[J].Nature,2008,451:168.
[28] 陈名海,高濂.多元醇法制备和表征Sb2Se3纳米线[J].无机材料学报,2005(06):1343-1348.
[29] Bed Poudel;Qing Hao;Yi Ma;Yucheng Lan;Austin Minnich;Bo Yu;Xiao Yan;Dezhi Wang;Andrew Muto;Daryoosh Vashaee .High-Thermoelectric Performance of Nanostructured Bismuth Antimony Telluride Bulk Alloys[J].Science,2008(5876):634-638.
[30] Fan XA;Yang JY;Xie Z;Li K;Zhu W;Duan XK;Xiao CJ;Zhang QQ .Bi2Te3 hexagonal nanoplates and thermoelectric properties of n-type Bi2Te3 nanocomposites[J].Journal of Physics, D. Applied Physics: A Europhysics Journal,2007(19):5975-5979.
[31] Cronin B. Vining .An inconvenient truth about thermoelectrics[J].Nature materials,2009(2):83-85.
[32] SUNG-DO KWON;BYEONG-KWON JU;SEOK-JIN YOON;JIN-SANG KIM .Fabrication of Bismuth Telluride-Based Alloy Thin Film Thermoelectric Devices Grown by Metal Organic Chemical Vapor Deposition[J].Journal of Electronic Materials,2009(7):920-924.
[33] Ihtesham Chowdhury et al.(ha-chip cooling by superlattieebased thin-film thermoelectrics[J].Nature Nanotechnology,2009,4:235.
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