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甘氨酸硝酸盐法合成GdBaCo_2O_(5+δ)阴极材料及其性能 被引量:10

Synthesis and Characterization of GdBaCo_2O_(5+δ) Cathode Material by Glycine-nitrate Process
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摘要 采用甘氨酸硝酸盐法(GNP)制备中温固体氧化物燃料电池(IT-SOFC)GdBaCo2O5+δ(GBCO)阴极材料,探索甘氨酸与金属阳离子摩尔比(G/M)等合成条件对产物性能的影响,研究了GBCO的微观形貌、晶体结构、电导率和电化学性能.结果表明,G/M为3.0的阴极粉料(GBCO-3.0)颗粒细小均匀且比表面积大,G/M在2.5~3.5之间制备的粉料经1000℃煅烧5 h可形成结晶度高的GBCO纯相.阴极材料GBCO与电解质材料Sm0.2Ce0.8O1.9(SDC)在1100℃混合煅烧,未发生明显的化学反应.在500~800℃范围内,GBCO阴极的电导率均大于100 S/cm.1050℃煅烧的GBCO-3.0阴极的极化电阻(Rp)最小,750℃为0.125.cm2. GdBaCo2O5+δ(GBCO) powders were synthesized by the glycine-nitrate process(GNP) with different glycine/metal ratios(G/M) and characterized as cathode material for intermediate temperature solid oxide fuel cell(IT-SOFC).The effects of G/M ratios on the performance and properties of GBCO electrodes including the morphology,crystal structure,electrical conductivity and electrochemical properties were evaluated.The GBCO powder synthesized at G/M ratio of 3.0(GBCO-3.0) showed the highest specific surface area.XRD results proved that the precursor powders calcined at 1000℃ for 5 h formed GBCO single-phase when the ratio of glycine to metal was in the range of 2.5–3.5.There were no chemical reaction occurred between the GBCO cathode and the Sm0.2Ce0.8O1.9(SDC) electrolyte after calcination at 1100℃.The electrical conductivities of all GBCO cathodes were over 100 S/cm at intermediate temperature(500–800℃).The GBCO-3.0 cathode calcined at 1050℃ exhibited the lowest polarization resistance(RP) of 0.125.cm2at 750 ℃.
出处 《无机材料学报》 SCIE EI CAS CSCD 北大核心 2012年第7期751-756,共6页 Journal of Inorganic Materials
基金 江苏高校优势学科建设资助项目~~
关键词 GdBaCo2O5+δ 电导率 电化学性能 甘氨酸–硝酸盐法 阴极 GdBaCo2O5+δ electrical conductivity electrochemical performance glycine-nitrate process cathode
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  • 1Molenda J, Swierczek K, Zaj~c W. Functional materials for the IT-SOFC. Journal of Power Sources, 2007, 173(2): 657-670. 被引量:1
  • 2Brett D J L, Atkinson A, Cumming D, et al. Methanol as a direct fuel in intermediate temperature (500-600~C) solid oxide fuel cells with copper based anodes. Chemical Engineering Science, 2005, 60(21): 5649-5662. 被引量:1
  • 3Shiono M, Kobayashi K, Nguyen T L, et al. Effect of CeO2 inter- layer on ZrO2 electrolyte/La(Sr)CoO3 cathode for low-temperature SOFCs. Solid State lonics, 2004, 170(1/2): 1-7. 被引量:1
  • 4I Huijsmans J P P, Berkel F P F, Christie G M. Intermediate tem1perature SOFC - a promise for the 21st century. Journal of Power Sources, 1998, 71(1/2): 107-110. 被引量:1
  • 5Zhu C J, Liu X M, Yi C S, et al. Electrochemical performance of PrBaCo2Os+ layered perovskite as an intermediate-temperature solid oxide fuel cell cathode. Journal of Power Sources, 2008, 185(1): 193-196. 被引量:1
  • 6Choi M B, Jeon S Y, Song S J, et al. Chemical diffusivity and ionic conductivity of GdBaCo2Os~a. Journal of Power Sources, 2010, 195(4): 1059-1064. 被引量:1
  • 7Conder K, Podlesnyak A, Pomjakushina E, et al. Transport proper- ties and oxygen isotope effect in layered cobaltites RBaCozOs~x. Journal of Magnetism and Magnetic Materials, 2007, 310(2): 907-909. 被引量:1
  • 8Liu Y. YBaCo2Os~~ as a new cathode material for zirconia-based solid oxide fuel cells. Journal of Alloys and Compounds, 2009, 477(1/2): 860-862. 被引量:1
  • 9Taskin A A, Lavrov A N, Ando Y. Fast oxygen diffusion in A-site ordered perovskites. Progress in Solid State Chemistry, 2007, 35(2/3/4): 481-490. 被引量:1
  • 10Lin B, Zhang S Q, Zhang L C, et al. Prontonic ceramic membrane fuel cells with layered GdBaCo2Os+x cathode prepared by gel-casting and suspension spray. Journal of Power Sources, 2008, 177(2): 330-333. 被引量:1

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