东北大学学报(自然科学版) ›› 2009, Vol. 30 ›› Issue (12): 1759-1762.DOI: -

• 论著 • 上一篇    下一篇

Sm-Gd掺杂CeO_2基纳米粉体的制备

燕萍;胡筱敏;祁阳;   

  1. 东北大学资源与土木工程学院;东北大学理学院;
  • 收稿日期:2013-06-22 修回日期:2013-06-22 出版日期:2009-12-15 发布日期:2013-06-22
  • 通讯作者: Yan, P.
  • 作者简介:-
  • 基金资助:
    辽宁省科技计划项目(2006402049)

Preparation of Sm-Gd-doped and ceria-based nanopowder

Yan, Ping (1); Hu, Xiao-Min (1); Qi, Yang (2)   

  1. (1) School of Resources and Civil Engineering, Northeastern University, Shenyang 110004, China; (2) School of Sciences, Northeastern University, Shenyang 110004, China
  • Received:2013-06-22 Revised:2013-06-22 Online:2009-12-15 Published:2013-06-22
  • Contact: Yan, P.
  • About author:-
  • Supported by:
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摘要: 采用均相沉淀法,以CO(NH2)2和(CH2)6N4为沉淀剂,Ce(NO3)3.6H2O,Sm2O3,Gd2O3为起始原料,经过700℃焙烧4.5h,分别制备了Sm,Gd掺杂及Sm和Gd共掺杂的CeO2基纳米粉体.利用X射线衍射、扫描电子显微镜和BET等方法,对焙烧粉体的物相、形貌、晶粒尺寸及比表面积进行分析表征.结果表明,通过控制反应条件可对粉体的形貌和粒径进行有效控制;当混合金属离子总浓度为0.04mol/L,起始沉淀剂浓度为0.5mol/L,pH值为6.8时所得前驱体粉末经过焙烧,其产物为具有立方萤石型晶体结构及良好相纯度和结晶性、粒度分布为21~28nm的球形纳米粉体.该方法不失为低温...

关键词: 无机非金属材料, 均相沉淀法, 掺杂氧化铈, 固体电解质, 纳米粉体

Abstract: The nanocrystalline ceria-based precursor powder doped with samarium (Sm), gadolinium (Gd) and both of them were prepared separately via a homogeneous precipitation process where the urea and hexamethylenetetramine (HMT) as precipitants with the high-purity reagents Ce(NO3)3·6H2O, Sm2O3 and Gd2O3 as starting materials were both calcined at 700°C for 4.5 hr. Characterizing the phase, morphology, particle size and specific surface area of the products with XRD, SEM and Brunauer-Emmett-Teller (BET), the results showed that both the synthesized powder can be controlled efficiently via controlling the reaction conditions. When the total ion concentration of mixed metal is 0.04 mol/L and the initial concentration of precipitants is 0.5 mol/L with a pH value 6.8, the product from calcined precursor powder presents a single cubic fluorite-type structure with high phase purity and crystallinity, and the size distribution shows that the sphere-like nanopowder particles are in the range from 21 to 28 nm. The synthesized process proposed can yet be regarded as a new reliable approach to preparing the ceria-based electrolytic materials with more homogeneous finer particle size and higher activity at low temperature.

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