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综述了中低温下高电导率CeO2基电解质材料研究的最新进展,重点评述了双掺杂和纳米复相提升CeQ基电解质材料电导率和抑制电子电导的机理,并指出了未来CeO2基电解质材料的发展方向.

参考文献

[1] Shao, ZP;Haile, SM .A high-performance cathode for the next generation of solid-oxide fuel cells[J].Nature,2004(7005):170-173.
[2] Liu, Y;Zha, SW;Liu, ML .Nanocomposite electrodes fabricated by a particle-solution spraying process for low-temperature SOFCs[J].Chemistry of Materials,2004(18):3502-3506.
[3] Abrantes J C C;Pérez-Coll D;Nú(n)ez P et al.Electronic transport in Ce0.8 Smm0.2O1.9-δ ceramics under reducing conditions[J].Electrochimica Acta,2003,48(19):2761.
[4] Jianbing Huang;Fucheng Xie;Cheng Wang;Zongqiang Mao .Development of solid oxide fuel cell materials for intermediate-to-low temperature operation[J].International journal of hydrogen energy,2012(1):877-883.
[5] Yen-Pei Fu .Microwave-induced combustion synthesis and ionic conductivity of Ce_(0.8)(Gd_(0.2-x)Sm_x)O_(1.90) ceramics[J].CERAMICS INTERNATIONAL,2008(8):2051-2057.
[6] Ramesh S;Kumar V P;Kistaiah P et al.Preparation,characterization and thermo electrical properties of co-doped Ce0.8 x Sm0.2 CaxO2-δ materials[J].Solid State Ionics,2010,181(1-2):86.
[7] Parkash, O.;Singh, N.;Singh, N.K.;Kumar, D..Preparation and characterization of ceria co-doped with Ca and Mg[J].Solid state ionics,2012:100-105.
[8] Huang HB;Mao ZQ;Liu ZX;Wang C .Development of novel low-temperature SOFCs with co-ionic conducting SDC-carbonate composite electrolytes[J].Electrochemistry communications,2007(10):2601-2605.
[9] Samarium doped ceria-(Li/Na)_2CO_3 composite electrolyte and its electrochemical properties in low temperature solid oxide fuel cell[J].Journal of Power Sources,2010(15):p.4695.
[10] Lei Zhang;Rong Lan;Xiaoxiang Xu;Shanwen Tao;Yinzhu Jiang;Arno Kraft .A high performance intermediate temperature fuel cell based on a thick oxide-carbonate electrolyte[J].Journal of Power Sources,2009(2):588-600.
[11] Maricle D L;Swarr T E;Karavolis S .Enhanced ceria-A low-temperature SOFC electrolyte[J].Solid State Ionics,1992,52(1-3):173.
[12] van Herle J;Seneviratne D;Mcevoy A J .Lanthanide co-doping of solid electrolytes:AC conductivity behaviour[J].Journal of the European Ceramic Society,1999,19(6-7):837.
[13] Study on calcium and samarium co-doped ceria based nanocomposite electrolytes[J].Journal of Power Sources,2010(19):P.6491.
[14] Dikmen S .Effect of co-doping with Sm3+,Bi3-,La3+,and Nd3+ on the electrochemical properties of hydrothermally prepared gadolinium-doped ceria ceramics[J].Journal of Alloys and Compounds,2010,491(1-2):106.
[15] Yifeng Zheng;Haitao Gu;Han Chen;Ling Gao;Xiaofang Zhu;Lucun Guo .Effect Of Sm And Mg Co-doping On The Properties Of Ceria-based Electrolyte Materials For It-sofcs[J].Materials Research Bulletin,2009(4):775-779.
[16] Inaba H.;Tagawa H. .CERIA-BASED SOLID ELECTROLYTES - REVIEW [Review][J].Solid state ionics,1996(1/2):1-16.
[17] Y. Ji;J. Liu;T. He .The effect of Pr co-dopant on the performance of solid oxide fuel cells with Sm-doped ceria electrolyte[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2005(1/2):317-322.
[18] Kim D J .Lattice parameters,ionic conductivities,and solubility limits in fluorite-structure MO2 oxide[M =HP+,Zr4+,Ce4+,Th4+,U4+]solid solutions[J].Journal of the American Ceramic Society,1989,72(08):1415.
[19] Steele BCH.;Uchino S.;Hori KM. .Kinetic parameters influencing the performance of IT-SOFC composite electrodes[J].Solid state ionics,2000(1/4):445-450.
[20] Banerjee S;Devi PS;Topwal D;Mandal S;Menon K .Enhanced ionic conductivity in Ce0.8Sm0.2O1.9: Unique effect of calcium co-doping[J].Advanced functional materials,2007(15):2847-2854.
[21] 杨建平,陈志刚,李霞章,陈杨.CeO2基中温电解质材料的掺杂改性[J].电源技术,2006(08):684-688.
[22] 梁广川,刘文西,陈玉如,杜春生.Sm,Gd共同掺杂的CeO2基电解质性能研究[J].硅酸盐学报,2000(01):44-46.
[23] Vanherle J.;Kawada T.;Sakai N.;Yokokawa H.;Dokiya M.;Horita T. .LOW TEMPERATURE FABRICATION OF (Y,GD,SM)-DOPED CERIA ELECTROLYTE[J].Solid state ionics,1996(2):1255-1258.
[24] Yingchao Dong;Stuart Hampshire;Jian-er Zhou .Combustion synthesis and characterization of Cu-Sm co-doped CeO_2 electrolytes[J].Journal of the European Ceramic Society,2011(13):2365-2376.
[25] Xiangfeng Guan;Heping Zhou;Zhihui Liu;Yanan Wang;Jun Zhang .High performance Gd~(3+) and Y~(3+) co-doped ceria-based electrolytes for intermediate temperature solid oxide fuel cells[J].Materials Research Bulletin: An International Journal Reporting Research on Crystal Growth and Materials Preparation and Characterization,2008(4):1046-1054.
[26] Guan X;Zhou H;Wang Y et al.Preparation and properties of Gd3+ and y3+ co-doped ceria-based electrolytes for intermediate temperature solid oxide fuel cells[J].Journal of Alloys and Compounds,2008,464(1-2):310.
[27] Prashanth Kumar V;Reddy Y S;Kistaiah P et al.Thermal and electrical properties of rare-earth co-doped ceria ceramics[J].Materials Chemistry and Physics,2008,112(02):711.
[28] Magdalena Dudek .Ceramic oxide electrolytes based on CeO_2--Preparation, properties and possibility of application to electrochemical devices[J].Journal of the European Ceramic Society,2008(5):965-971.
[29] Liang C C .Conduction characteristics of the lithium iodidealuminum oxide solid electrolytes[J].Journal of the Electrochemical Society,1973,120(07):1289.
[30] Zhu B;Li S;Mellander BE .Theoretical approach on ceria-based two-phase electrolytes for low temperature (300-600 degrees C) solid oxide fuel cells[J].Electrochemistry communications,2008(2):302-305.
[31] Raza R;Qin H;Fan L et al.Electrochemical study on codoped ceria-carbonate composite electrolyte[J].Journal of Power Sources,2012,201(0):121.
[32] Wang XD;Ma Y;Raza R;Muhammed M;Zhu B .Novel core-shell SDC/amorphous Na2CO3 nanocomposite electrolyte for low-temperature SOFCs[J].Electrochemistry communications,2008(10):1617-1620.
[33] Gao Z;Raza R;Zhu B et al.Preparation and characterization of Srn0.2 Ce0.8 O1.9/Na2 CO3 nanocomposite electrolyte for low-temperature solid oxide fuel cells[J].International Journal of Hydrogen Energy,2011,36(06):3984.
[34] Improved ceria-carbonate composite electrolytes[J].International journal of hydrogen energy,2010(7):2684.
[35] Zhang, L.;Lan, R.;Kraft, A.;Tao, S. .A stable intermediate temperature fuel cell based on doped-ceria-carbonate composite electrolyte and perovskite cathode[J].Electrochemistry communications,2011(6):582-585.
[36] 高冬云,郭瑞松.Yb掺杂锆酸钡/硫酸盐复相质子导体的研究[J].稀有金属材料与工程,2009(z2):696-699.
[37] 彭珍珍,郭瑞松,尹自光,李娟,蔡舒.BaZrO3/NaOH复相质子导体的制备与性能[J].稀有金属材料与工程,2007(z2):596-598.
[38] Raza, R.;Abbas, G.;Wang, X.;Ma, Y.;Zhu, B. .Electrochemical study of the composite electrolyte based on samaria-doped ceria and containing yttria as a second phase[J].Solid state ionics,2011(1):58-63.
[39] Effects of salt composition on the electrical properties of samaria-doped ceria/carbonate composite electrolytes for low-temperature SOFCs[J].International journal of hydrogen energy,2010(9):4270.
[40] Xiaodi Wang;Ying Ma;Shanghua Li;Bin Zhu;Mamoun Muhammed .SDC/Na_2CO_3 nanocomposite: New freeze drying based synthesis and application as electrolyte in low-temperature solid oxide fuel cells[J].International journal of hydrogen energy,2012(24):19380-19387.
[41] Yimg Ma;Xiaodi Wang;Shanghua Li;Muhammet S. Toprak;Bin Zhu;Mamoun Muhammed .Samarium-Doped Ceria Nanowires: Novel Synthesis and Application in Low-Temperature Solid Oxide Fuel Cells[J].Advanced Materials,2010(14):1640-1644.
[42] 贾慧娴,黄建兵,张萍,高展,毛宗强,史玉芳.低温固体氧化物燃料电池SDC-(Li/Na)2CO3复合电解质材料优化[J].太阳能学报,2009(07):979-984.
[43] SDC-LiNa carbonate composite and nanocomposite electrolytes[J].International journal of hydrogen energy,2010(7):2970.
[44] 朱晓东,孙克宁,周德瑞.稳定的ZrO2基SOFC中CeO2夹层的制备方法和作用机制[J].化学进展,2007(11):1710-1717.
[45] Tsai T;Perry E;Barnett S .Low-temperature solid-oxide fuel cells (SOFC's) utilizing thin bilayer electrolytes[J].Journal of the Electrochemical Society,1997,144(05):L130.
[46] Mogens M .Physical properties of mixed conductor solid oxide fuel anodes of doped CeO2[J].Journal of the Electrochemical Society,1994,141(08):2122.
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