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钐掺杂对CeO_2电解质导电性能的影响 被引量:3

Effect of Doped Samarium on Electrical Properties of CeO_2
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摘要 采用溶胶-凝胶法合成Ce1-xSmxO2-δ(x=0,0.1,0.2)系列固体电解质。通过XRD,Raman,SEM和交流阻抗技术系统研究掺杂浓度、相对密度、晶粒大小和氧空位浓度对电解质导电性能的影响。XRD结果表明,所有样品均呈现CeO2结构,即形成了Ce1-xSmxO2-δ固溶体。在掺杂离子相同,电解质的晶粒大小和相对密度十分接近的情况下,较多Sm3+的掺入能促使样品形成较多的氧空位,更有利于O2-的传递,从而使得Ce0.8Sm0.2O2-δ的电导性能高于Ce0.9Sm0.1O2-δ样品。 A series of Ce1-xSmxO2-δ(x =0, 0.1 and 0.2) solid electrolytes were prepared by a citrate solgel method. The influence of content, density, grain size and concentration of oxygen vacancies on their electrical properties were investigated by X-ray diffraction (XRD), Raman spectroscopy, SEM and AC impedance spectroscopy. The XRD results confirmed the formation of Ce1-xSmxO2-δ solid solution with uniform particle sizes, which could be sintered at 1500 ℃.The Raman spectroscopic results showed that a higher substitution of Sm into the ceria lattice could enhance the formation of oxygen vacancies. Under the same adulterant, grain size and density, the improvement of oxygen vacancies was beneficial to the migration of O^2- , which resulted in a higher electrical conductivity obtained on the Ce0.8 Sm0.2 O2-δ compared to that of the Ce0.9 Sm0. 1O2-δ
出处 《中国稀土学报》 CAS CSCD 北大核心 2009年第3期409-413,共5页 Journal of the Chinese Society of Rare Earths
基金 浙江省自然科学基金资助项目(Z404383)
关键词 固体电解质 浓度 氧空位 电导率 稀土 solid electrolyte content oxygen vacancies electrical conductivity rare earths
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参考文献18

  • 1Minh N Q. Ceramic fuel cells [J]. J. Am. Ceram. Soc., 1993, 76(3) : 563.
  • 2江义,李文钊,王世忠.高温固体氧化物燃料电池(SOFC)进展[J].化学进展,1997,9(4):387-396. 被引量:54
  • 3Inaba H, Tagawa H. Ceria-base solid electrolytes [ J ]. Solid State lonics, 1996, 83(1-2) : 1.
  • 4Peng C, Wang Y, Jiang K, Bin B Q, Liang H W, Feng J, Meng J. Study on the structure change and oxygen vacation shift for Ce1-xSmx O2-y solid solution [J]. J. Alloys Compd. , 2003, 349(1-2) : 273.
  • 5Chourashiya M G, Pawar S H, Jadhav L D. Studies on structural, morphological and electrical properties of Ce1-xGdxO2-(x/2) [J]. Mater. Chem. Phys., 2008, 109(1):39.
  • 6Namjin K, Byong H K, Dokyol L. Effect of co-dopant addition on properties of gadolinia-doped ceria electrolyte [ J ]. J. Power Sources, 2000, 90(2) : 139.
  • 7Koichi E. Ceramic materials containing rare earth oxides for solid oxide fuel cell [J]. J. Alloys Compd., 1997, 250(1- 2) : 486.
  • 8Peng R R, Xia C R, Fu Q X, Meng G Y, Peng D K. Sintering and electrical properties of ( CeO2 ) 0.8(Sm2O3) 0.1 powders prepared by glycine-nitrate process [ J]. Mater. Lett. , 2002, 56 (6) : 1043.
  • 9Wang Y R, Mori T, Li J G, Drennan J. Synthesis, characterization, and electrical conduction of 10mol% Dy2 O3 -doped CeO2 ceramics [J]. J. Eur. Ceram. Soc. , 2005, 25(6) : 949.
  • 10Dudek M. Ceramic oxide electrolytes based on CeO2-Preparation, properties and possibility of application to electrochemical devices [J]. J. Eur. Ceram. Soc., 2008, 28(5) : 965.

二级参考文献24

  • 1江义,李文钊,曹立新,阎景旺.Pt/YSZ固体电解质界面的电化学动力学研究[J].电化学,1996,2(1):32-40. 被引量:7
  • 2[1]Kilner J A, Steel B C H. In: Nonstoi-Chiometric Oxides. New York: Academic Press, 1981. 233-269.
  • 3[2]Bauerle J E, Hrizo J. J. Phys. Chem. Solids, 1969, 30: 565-570.
  • 4[3]Abélard P, Baumard J F. Phys. Rev., 1982, B26: 1005-1017.
  • 5[4]Badwal S P S. J. Mater. Sci., 1984, 19: 1767-1776.
  • 6[5]Solier J D, Pérez-Jubindo M A, Dominguez-Rodriguez A, et al. J. Am. Ceram. Soc., 1989, 72:1500-1502.
  • 7[6]Badwal S P S. J. Am. Ceram. Soc., 1990, 73: 3718-3719.
  • 8[7]Mackrodt W C, Woodrow P M. J. Am. Ceram. Soc., 1986, 69: 277-280.
  • 9[8]Butler V, Catlow C R A, Fender B E F. Solid State Ionics, 1984, 5: 539-542.
  • 10[9]Bauerle J E. J. Phys. Chem. Solids, 1969, 30: 2657-2670.

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同被引文献22

  • 1汤根土,骆仲泱,余春江,倪明江,岑可法.溶胶-凝胶低温燃烧合成法制备Sm_(0.15)Gd_(0.05)Ce_(0.8)O_(1.9)纳米粉体[J].硅酸盐学报,2004,32(9):1121-1127. 被引量:6
  • 2高运明,郭兴敏,周国治.利用阻抗谱测定氧化锆试样的电导率[J].武汉科技大学学报,2005,28(3):237-240. 被引量:10
  • 3赵文广,安胜利,宋希文.Y_2O_3与MgO复合掺杂ZrO_2材料的电性能研究[J].稀土,2006,27(4):59-62. 被引量:5
  • 4Cinzia Cristiani,Luca Zampori,Saverio Ytorrata. Carbonate Coprecipitation synthesis of Sr-and Mg-doped YGaO3[J].Materials Letters,2009,(21):1892-1894.
  • 5Fang Q,Zhang J Y. Preparation of Ce1-xGdxO2-0.05x thin films by UV assisted sol-gel method[J].Surface and Coatings Technology,2002.100-104.
  • 6Li M,Li Z G,Hua Y H. Catalytic performance of CexZr1-xO2 solid solutions promoted via modification on synthesis methods[J].Colloids and Surfaces,2010.17-23.
  • 7Choy K,Bai W,Charo J S. The development of intermediate temperature fuel cells for the next mil-lennium[J].Journal of Power Sources,1998,(02):361-369.
  • 8李瑛;王林山.燃料电池[M]北京:冶金工业出版社,200021-24.
  • 9Mauvy F,Lenormand P,YYnne C. Electroehemieal characterization of YSZ thiek films deposited by dip-coating proeess[J].Journal of Power Sources,2007,(02):783-788.
  • 10Yao H C,Zhao H L,Chen X. Processing and characteriza-tion of CoO and Sm2O3 codoped ceria solid solution electrolyte[J].Journal of Power Sources,2012.180-187.

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