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Effect of Tb co-dopant on the electrical conductivity of Sm-doped ceria electrolyte

机译:TB掺杂剂对SM掺杂二氧化铈电解质电导率的影响

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Series of solid solutions of (Ce0.85Sm0.15)1-xTbxO2-δ with x=0-0.05 were synthesized by glycine-nitrate process. All prepared (Ce0.85Sm0.15)1-xTbxO2-δ (x=0-0.05) powders were sintered at 1250°C, 1350°C and 1450°C, respectively. X-ray diffraction patterns indicate that all samples crystallize to a single phase of cubic fluorite structure. Higher sintering temperature was found to give lower electrical conductivity and higher activation energy for (Ce0.85Sm0.15)1-xTbxO2-δ (x= 0-0.05). The lower sintering temperatures suppress grain growth giving rise to small grain size. The samples sintered at lower temperatures showed higher grain boundary conductivities, which results in the increasing of total electrical conductivity. The change of electrical conductivities of solid solutions for (Ce0.85Sm0.15)1-xTbxO2-δ (x= 0-0.05) was not obvious, and the maximum conductivity was found at x=0.01 when sintered at1250°C. The reason may be that co-doping 0.01 terbium in doped ceria will increase the oxygen vacancy concentration slightly, increasing dopant concentration, the oxygen vacancy Vo and the dopants Tb'ce and Sm'ce tend to associate and form [V"o Tb'ce] and [V"o Sm'Ce] pairs, resulting in a decrease in [V"o].
机译:通过甘氨酸 - 硝酸盐法合成(CE0.85SM0.15)(CE0.85SM0.15)1-XTBXO2-δ的固体溶液系列。所有制备的(CE0.85SM0.15)1-XTBXO2-δ(x = 0-0.05)粉末分别在1250℃,1350℃和1450℃下烧结。 X射线衍射图表明所有样品结晶到立方萤石结构的单相。发现较高的烧结温度为(CE0.85SM0.15)1-XTBXO2-δ(x = 0-0.05)给出较低的导电性和更高的活化能量。较低的烧结温度抑制晶粒生长产生小的晶粒尺寸。在较低温度下烧结的样品显示出更高的晶界导电性,这导致总电导率的增加。 (CE0.85SM0.15)1-XTBXO2-δ(x = 0-0.05)的固溶体的电导率变化不明显,并且当在1250℃下烧结时,在X = 0.01时发现最大导电性。原因可能是掺杂掺杂的二氧化铈中的同掺杂0.01铽将略微增加氧气空位浓度,增加掺杂剂浓度,氧气空位Vo和掺杂剂Tb'ce,Sm'ce倾向于联系并形成[V“o Tb' CE]和[V“o Sm'ce]对,导致[V”O]减少。

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