期刊文献+

高分子网络凝胶法制备纳米SrCe_(0.90)Y_(0.10)O_(2.95)粉体 被引量:1

Preparation of Nanemeter-sized SrCe0.90Y0.10A2.95 Powders by Polyacrylamide Gel Method
下载PDF
导出
摘要 丙稀酰胺为单体,N,N'-亚甲基双丙稀酰胺为网络剂,通过高分子网络法制备固体电解质纳米SrCe0.90Y0.10O2.95粉体,制得粉体粒度范围在31~50 nm.利用X-射线衍射测定其结构,通过透射电镜测量其形貌.由红光谱可以得知粉体中的网络剂和单体在450℃以上才能完全分解,通过X-射线衍射可以知道在650℃时主要合成了Ce2Y2O7、Ce2Sr2O5、和CeO2三相,在1000℃时已经基本形成较完整的晶体结构. Nanometer-sized SrCe0.90Y0.10O2.95 powder was synthesized by the polyacrylamide gel method. The acrylamide was used as monomer, N, N'-methylenebisacrylamide was used as lattice reagent. The particle-diameter distribution of SrCe0.90Y0.10O2.95powder was from 31to 50 nm. We use X-ray diffraction (XRD) to measure the structure of the powders. The transmission electron microscope (TEM) was used to measure morphological structure of the powders. The conclusion was made that at 650℃ there were triple phases including Ce2Y2O7. Ce2Sr2O5 and CeO2. At 1 000℃ the crystal structure was formed basically according the photographanalysis of TEM dark field. But we can't gain one phase of SrCe0.90Y0.10O2.95 powder finally.
机构地区 东北大学 化学系
出处 《有色矿冶》 2004年第4期45-47,共3页 Non-Ferrous Mining and Metallurgy
关键词 SrCe0.90Y0.10O0.295高分子网络凝胶 平均粒径 (NH4)2Ce(NO3)6 Y2O3 Sr(NO3)2 透射 电镜 X-射线衍射 SrCe0.90Y0.10O2.95, polyacrtlamide-gel, average particle, (NH4)3Ce(NO3)6, Y2O3, Sr(NO3)2, transmission electron microscope (TEM) , X- ray diffraction (XRD)
  • 相关文献

参考文献12

  • 1E.O. Ahlgren, J.R. Hansen, N. Bonanos, F. W. Poulsen, M.Mogensen, in: F. W. Poulsen, N.Bonanos, F.W. Poulsen, M.Mogensen, Zachau - Christtianssen ( Eds. ). Proceedings of the 17th Riso International Symposium on Materials Science,Roskilde, Denmark, Thermo
  • 2H. Iwahara, T. Esaka. T. Sato. T. Takasashi. Formation of high oxide ion conductive phases in the sintered oxides of the systemBi2O3 - Ln2O3 (Ln equals La - Yb) [ J ]. Journal of Solid State Chemistry. 1981, (39): 173 ~ 180.
  • 3K. Eguchi, T. Setoguchi, T. Inoue, H. Arai, Electrical properties of ceria - based oxides and their application to solid oxide fuel cells[J]. Solid State Ionics. 1992, (52) : 165-172.
  • 4H. Iwahara, H. Uchida. N. Maeda. High temperature fuel and steam electrolysis cells using proton conduction solid electrolytes[J].J. Power Sources 1982, (7) :293-301.
  • 5H. Iwahara, H. Unhida. I. Yamasati. High- temperature steam electrolysis using SrCeO3 - based proton conduction solid electrolytes[J]. International J. Hydrogen Energy. 1987, (12):73 - 77.
  • 6H. Iwahara, High temperature proton conducting oxides and their applications to solid electrolyte fuel cells and stem electrolyzer for hydrogen production[J] .Solid State Ionics 1988, (28-30):573-578.
  • 7T. Scherban, A.S. Nowick, Bulk protonic conduction in Ybdoped SrCeO3[J]. Solid State Ionics. 1989, (35): 189- 194.
  • 8I. Kosacki, H.L, Tuller, Mixed conductivity in SrCe0.95Yb0.05O3 protonic conductors[J]. Solid State Ionics. 1995, (80):223-229.
  • 9M.B. Philips, M. NSammes, O. YamaotoGd1-xAxCo1-yMnyO3 (A= Sr, Ca)as a cathode for the SOFC[J]. Solid State Ionics.1999, (123): 131 - 138.
  • 10Douy A, Odier P. Chemical Inhomogeneities in YBaCuO produced by conventional sintering[J]. Mat. Res. Bull., 1989,(24) : 1119- 1126.

二级参考文献13

  • 1张密林,周铭,景晓燕,辛艳凤.柠檬酸法合成高性能BaFe_12O_19超微粉[J].硅酸盐通报,1996,15(4):22-25. 被引量:13
  • 2罗绍华 唐子龙 张中太.低温燃烧合成纳米四方相钛酸钡粉体 [J].稀有金属材料与工程,2002,31:300-304.
  • 3HILTON A D, FROST R . Recent developments in the manufacture of barium titanate powders[J]. Key Eng Mater,1992,66-67:145-184.
  • 4PHULE P P, RISBUD S H. Review: low-temperature synthesis and processing of electronic materials in the BaO-TiO2 synthesis[J]. J Mater Sci,1990,25:1 169-1 183.
  • 5KOMAROV A V,PARKIN I P. Self propagating high temperature synthesis of BaTiO3 using titanium trichloride as a fuel source[J]. J Mater Sci Lett,1996,15:542-543.
  • 6BOCQUET J F,CHHOR K,POMMIER C. Barium titanate powders synthesis from solvothermal reaction supercritical treatment[J]. Mater Chem Phys,1999,57:273-280.
  • 7ZHONG Zhimin, GALLAGHER P K. Combustion synthesis for BaTi4O9 and PbxBa1-xTi4O9[J]. J Mater Res,1996,11(1):162-168.
  • 8ANURADHA T V, RANGANATHAN S, MIMANI T et al. Combustion synthesis of nanostructured barium titanate[J]. Scripta Mater,2001,44:2 237-2 241.
  • 9ZHONG Zhimin,GALLAGHER P K. Combustion synthesis and characterization of BaTiO3[J]. J Mater Res,1995,10(1):945-952.
  • 10JAIN S R,ADIGA K C,PAI VERNEKER V R. A new approach to thermochemical calculations of condensed fuel-oxidizer mixtures[J]. Combus Flame,1981,40:71-79.

共引文献67

同被引文献16

  • 1骆俊廷,张凯锋,曾甜.高分子网络凝胶法制备纳米YAG-Y_2O_3复合粉体[J].硅酸盐通报,2004,23(4):95-97. 被引量:5
  • 2邵忠宝,陈艳芳,栾万强,陈雪冰.纳米TiO_2的制备及其光催化活性[J].材料研究学报,2005,19(2):213-217. 被引量:9
  • 3吴承佩 周彩华 等.高分子化学实验[M].安徽科技出版社,1988..
  • 4Xu Jiaqiang, Li Jinfeng,et al. Studies on propreing nanometer powder of gas sensing materials. Sensor World, 1991 ( 1 ) : 28 - 33
  • 5Ozbay E, Michel E,Tuttle E, et al. Micromachined millimeter - wave photonic band - gap crystals. Appl Phys Lett, 1994,64(16) :2059 - 2061
  • 6Morse M D. Cluster of transition - metal atom. Chem Rev,1986, 86:1 049
  • 7Chnettler F J, Monforte F R, Rhodes W W. Science of Ceramics, Proceedings, British Ceramics Society, 1968, 4 : 79
  • 8Douy A, Odier P. Preparation of nanoscale Yba2Cu3O7-x powder by the polyacrylamide gel method nanostruchured materials. Mat Res Bull, 1989,24(10) : 119 - 123
  • 9Sergey G Starodubtsev et al. Formation of magnetite nanopartieles in poly ( acrylamide ) gels. Phys,2005,17 : 1 741 - 1 480
  • 10古川淳二.高分子合成.日本:化学同人,1986

引证文献1

二级引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部