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Preparation, sintering and electrical properties of nano-grained multidoped ceria

机译:纳米二氧化铈的制备,烧结及电性能

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摘要

Multiply doped ceria nanopowders were synthesized by applying MGNP (modified glycineitrate procedure). The overall concentration of dopants was kept constant (x = 0.2) whereby Gd ion as the main dopant was gradually substituted by Sm and by Sm + Y. The compositions of solid solutions were calculated by applying defect model introducing anion vacancy radius. Characterization of powders involved BET, TEM, XRD and chemical analyses. Densification was performed at 1500 °C, in an oxygen atmosphere for 1 h. The results showed that with increasing number of dopants, specific surface area of powders increased, followed by decrease of crystallite and grain sizes. Densification degree was also found to rise with increasing number of dopants. According to impedance measurements it was found that ionic conductivity was the highest 1.14 X 10~(-3) S cm~(-1) at 450 °C in sample doped with Gd, Sm and Y simultaneously.
机译:通过应用MGNP(改良的甘氨酸/硝酸盐方法)合成了多掺杂的二氧化铈纳米粉。掺杂剂的总浓度保持恒定(x = 0.2),从而使作为主要掺杂剂的Gd离子逐渐被Sm和Sm + Y取代。通过应用引入阴离子空位半径的缺陷模型来计算固溶体的组成。粉末的表征涉及BET,TEM,XRD和化学分析。在氧气气氛中于1500°C进行致密化1小时。结果表明,随着掺杂剂数量的增加,粉末的比表面积增加,随后微晶和晶粒尺寸减小。还发现致密化程度随着掺杂剂数量的增加而增加。根据阻抗测量结果发现,在同时掺杂Gd,Sm和Y的样品中,离子电导率在450°C时最高为1.14 X 10〜(-3)S cm〜(-1)。

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