【摘 要】
:
Homogeneous co-precipitation and hydrothermal treatment were used to prepare nano- and highly dispersed Ni O/YSZ(yttria-stabilized zirconia) composite powders.
【机 构】
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Research Institute of Industrial Science and Technology (RIST), Fuel Cell Project,Changwon National
【出 处】
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Nano-Micro Letters
论文部分内容阅读
Homogeneous co-precipitation and hydrothermal treatment were used to prepare nano- and highly dispersed Ni O/YSZ(yttria-stabilized zirconia) composite powders. Composite powders of size less than 100 nm were successfully prepared. This process did not require separate sintering of the YSZ and Ni O to be used as the raw materials for solid oxide fuel cells. The performance of a cell fabricated using the new powders(max.power density ~0.87 W/cm~2) was higher than that of a cell fabricated using conventional powders(max. power density ~0.73 W/cm~2). Co-precipitation and hydrothermal treatment proved to be very effective processes for reducing cell production costs as well as improving cell performance.
Homogeneous co-precipitation and hydrothermal treatment were used to prepare nano- and highly dispersed Ni O / YSZ (yttria-stabilized zirconia) composite powders. Composite powders of size less than 100 nm were successfully prepared. This process did not require separate sintering of the YSZ and Ni O to be used as the raw materials for solid oxide fuel cells. The performance of a cell fabricated using the new powders (max.power density ~ 0.87 W / cm ~ 2) was higher than that of a cell fabricated using conventional Co-precipitation and hydrothermal treatment proved to be very effective processes for reducing cell production costs as well as improving cell performance.
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