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Characteristics of ultrafine (CeO/sub 2/)/sub 0.9/(Gd/sub 2/O/sub 3/)/sub 0.1/ powders prepared by the glycine-nitrate process

机译:硝酸甘氨酸法制备的超细(CeO / sub 2 /)/ sub 0.9 /(Gd / sub 2 / O / sub 3 /)/ sub 0.1 /粉末的特性

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Ultrafine and polycrystalline (CeO/sub 2/)/sub 0.9/(Gd/sub 2/O/sub 3/)/sub 0.1/ powders with specific surface areas of 19/spl sim/23 m/sup 2//g were synthesized by the glycine-nitrate process and then their sintering and electrical characteristics were investigated with the dilatometric and AC impedance measurements. In the dilatometric measurements green bodies from the synthesized powders after milling shrank to about 1470/spl deg/C in appearance and then expanded thermally with the increase of the heating temperature, whereas those from the synthesized powders before milling continuously shrank to the temperatures of 1600/spl deg/C. It may be due to the change of the packing density of the synthesized powders by milling. Therefore, the sintered (CeO/sub 2/)/sub 0.9/(Gd/sub 2/O/sub 3/)/sub 0.1/ bodies from the as-milled powders could be obtained to have near the theoretical density controlling the sintering time at a sintering temperature more than 1470/spl deg/C in air. In the AC impedance measurements, the electrical resistivity of the (CeO/sub 2/)/sub 0.9/(Gd/sub 2/O/sub 3/)/sub 0.1/ bodies from the as-milled powders, sintered at 1500/spl deg/C with the increase of the sintering time, showed a minimum value at the sintering time of 10 h. The minimum total resistivity of the (CeO/sub 2/)/sub 0.9/(Gd/sub 2/O/sub 3/)0.1 bodies sintered at 1500/spl deg/C for 10 h seems to result from the lowest activation energy for the combination between the activation energies for the resistivities at the grain interior and grain boundary.
机译:比表面积为19 / spl sim / 23 m / sup 2 // g的超细和多晶(CeO / sub 2 /)/ sub 0.9 /(Gd / sub 2 / O / sub 3 /)/ sub 0.1 /粉末为用硝酸甘氨酸法合成,然后通过膨胀和交流阻抗测量研究了它们的烧结和电学特性。在膨胀测量中,研磨后合成粉末的生坯外观收缩至约1470 / spl deg / C,然后随着加热温度的升高而热膨胀,而研磨前合成粉末的生坯连续收缩至1600℃的温度。 / spl摄氏度/℃。这可能是由于通过研磨使合成粉末的堆积密度变化所致。因此,可以从研磨后的粉末中获得烧结的(CeO / sub 2 /)/ sub 0.9 /(Gd / sub 2 / O / sub 3 /)/ sub 0.1 /物体,其具有接近控制烧结的理论密度。在空气中烧结温度超过1470 / spl deg / C的时间。在AC阻抗测量中,研磨后的粉末中(CeO / sub 2 /)/ sub 0.9 /(Gd / sub 2 / O / sub 3 /)/ sub 0.1 /物体的电阻率在1500 /随烧结时间的增加,spl deg / C显示出在烧结时间为10 h时的最小值。 (CeO / sub 2 /)/ sub 0.9 /(Gd / sub 2 / O / sub 3 /)0.1物体在1500 / spl deg / C烧结10 h的最小总电阻率似乎是由最低活化能产生的对于在晶粒内部和晶界处的电阻率的活化能之间的组合。

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