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自2000年Lacorre等人报道La2Mo2O9具有较高的氧离子电导率以来,La2Mo2O9基氧离子导体由于具有优异的性能而受到人们的关注.本文综述了新型氧离子导体La2Mo2O9的研究现状.重点介绍了纯La2Mo2O9及其掺杂体系的结构与相变、氧离子电导率、氧空位扩散机理、化学稳定性和热膨胀系数等性能.已有的研究结果表明,基于La2Mo2O9的氧离子导体可望在固体氧化物燃料电池、氧传感器、透氧膜等方面得到应用.

参考文献

[1] Kendall K R,Navas C,Thomas J K,et al.Solid State Ionics,1995,82:215-223.
[2] Minh N Q.J.Am.Ceram.Soc.,1993,76:563-588.
[3] Lane J A,Benson S J,Waller D,et al.Solid State Ionics,1999,121:201-208.
[4] Pimenov A,Ullrich J,Lunkenheimer P,et al.Solid State Ionics,1998,109:111-118.
[5] Hibino T,Hashimoto A,Inoue T,et al.Science,2000,288:2031-2033.
[6] Kilner J A.Solid State Ionics,2000,129:13-23.
[7] Huang K,Tichy R S,Goodenough J B.J.Am.Ceram.Soc.,1998,81:2565-2575.
[8] Ishihara T,Kilner J A,Honda M,et al.Solid State Ionics,1998,113-115:593-600.
[9] Lacorre P,Goutenoire F,Bohnke O,et al.Nature,2000,404:856-858.
[10] Goutenoire F,Isnard O,Lacorre P.Chem.Matter.,2000,12:2575-2580.
[11] Lacorre P.Solid State Science,2000,2:755-758.
[12] Wang X P,Fang Q F.Phys.Rev.B,2002,65:064304-064309.
[13] Georges S,Goutenoire F,Altorfer F,et al.Solid State Ionics,2003,161:231-241.
[14] Marozau I P,Marrero-Lopez D,Shaula A L,et al.Electrochimica Acta,2004,49:3517-3524.
[15] Subasri R,Nafe H,Aldinger F.Mater.Res.Bull.,2003,38:1965-1977.
[16] Wang X P,Fang Q F.J.Phys.Condensed Matt.,2001,13:1641-1651.
[17] Wang X P,Fang Q F.Solid State Ionics,2002,146:185-193.
[18] Wang X P,Fang Q F,Li Z S,et al.Appl.Phys.Lett.,2002,81:3434-3436.
[19] Wang X P,Fang Q F,Li Z S,et al.Mater.Sci.Eng.A,2004,370:365-369.
[20] Yi Z G,Fang Q F,Wang X P.Solid State Ionics,2003,160:117-124.
[21] Hayward S A,Redfern S A T.J.Phys.Condensed Matt.,2004,16:3571-3583.
[22] Arulraj A,Goutenoire F,Tabellout M,et al.Chem.Mater.,2002,14:2492-2498.
[23] Bo Q B,Feng J,Wang H Y,et al.Chinese Chem.Lett.,2003,14:197-200.
[24] Fang Q F,Wang X P,Zhang G G,et al.J.Alloy & Comp.,2003,355:177-182.
[25] 方前锋,王先平,张国光,等.金属学报,2003,39:1133-1138.
[26] Wang X P,Cheng Z J,Fang Q F.Solid State ionics,2005,176:761-765.
[27] Goutenoire F,Isnard O,Suard E,et al.J.Mater.Chem.,2001,11:119-124.
[28] Subasri R,Matusch D,Nafe H,et al.J.Eur.Ceram.Soc.,2004,24:129-137.
[29] Basu S,Devi P S,Maiti H S.Appl.Phys.Lett.,2004,85:3486-3488.
[30] Zhang G G,Fang Q F,Wang X P,et al.phys.stat.sol.(a),2003,199:329-334.
[31] Georges S,Goutenoire F,Laligant Y,et al.J.Mater.Chem.,2003,13:2317-2321.
[32] Georges S,Goutenoire F,Bohnke O,et al.J.New Mater.Eletrochem.System.,2004,7:51-57.
[33] Yang J,Gu Z,Wen Z,et al.Solid State ionics,2005,176:523-530.
[34] Tsai D S,Hsieh M J,Tseng J C,et al.J.Eur.Ceram.Soc.,2005,25:481-487.
[35] Khadasheva Z S,Venskovskii N U,Safronenko M G,et al.Inorg.Mater.,2002,38:1168-1171.
[36] Collado J A,Aranda M A G,Cabeza A,et al.J.Solid State Chem.,2002,167:80-85.
[37] Marrero-Lopez D,Ruiz-Morales J C,Nunez P,et al.J.Solid State Chem.,2004,177:2378-2386.
[38] Rocha R A,Muccillo E N S.Chem.Mater.,2003,15:4268-4272.
[39] Marrero-Lopez D,Ruiz-Morales J C,Perez-Coll D,et al.J.Solid State Electrochem.,2004,8:638-643.
[40] Lacorre P,Retoux R.J.Solid State Chem.,1997,132:443-446.
[41] Kuang W X,Fan Y I,Yao K W,et al.J.Solid State Chem.,1998,140:354-360.
[42] Tarancon A,Dezanneau G,Arbiol J,et al.J.Power Sources,2003,118:256-264.
[43] Yang J,Wen Z,Gu Z,et al.J.Eur.Ceram.Soc.,2005,25:3315-3321.
[44] Georges S,Skinner S J,Lacorre P,et al.Dalton Trans.,2004,19:3101-3105.
[45] Fang Q F,Wang X P.Solid State Phenomenon,2003,89:293-298.
[46] 袁立曦,方前锋.金属学报,1998,34:1016-1020.
[47] Fang Q F,Wang X P,Zhang G G,et al.phys.Stat.Sol.(a),2005,202:1041-1047.
[48] Goutenoire F,Retoux R,Suard E,et al.J.Solid State Chem.,1999,142:228-235.
[49] Tarancon A,Norby T,Dezanneau G,et al.Electrochem.& Solid State Lett.,2004,7:A373-A375.
[50] Zhu B,Yang X T,Xu J,et al.J.Power Sources,2003,118:47-53.
[51] Kosacki I,Suzuki T,Petrovsky V,et al.Solid State Ionics,2000,136-137:1225-1233.
[52] Jiang S,Schulze W A,Amarakoon V R W,et al.J.Mater.Res.,1997,12:2374-2380.
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