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Effect of CuO doping on sinterability, mechanical and electrical properties of Sm-doped CeO_2 ceramic thick membrane solid electrolytes

机译:CuO掺杂对掺Sm的CeO_2陶瓷厚膜固体电解质的烧结性,力学性能和电性能的影响

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摘要

Ce_(0.8)Sm_(0.2)O_(1.9) - (CuO)_x (CSCO, x=0, 0.5, 1.0, 2.0 and 5.0%) powders were synthesized by a polyvinyl alcohol (PVA) assisted combustion method and labeled as CSO, CSCO-0.5, CSCO-1, CSCO-2 and CSCO-5, respectively. The corresponding pellet-shaped samples were sintered at 900-1400 °C and then characterized in sinterability, mechanical and electrical properties. Addition of CuO lowers the densification sintering temperature, and enhances mechanical strength which is attributed to a fracture transformation from intergranular to transgranular, as well as enhanced density. Compared with the CSO sintered at 1400 °C, a same densification degree is achieved for the CSCO-1 sintered only at 900 °C, and a significant increase in biaxial flexural strength is obtained from 191 ± 13 MPa to 253 ± 19 Mpa. This slight modification in chemical composition also results in a decrease in activation energy and thus an improvement in total electrical conductivity.
机译:通过聚乙烯醇(PVA)辅助燃烧法合成Ce_(0.8)Sm_(0.2)O_(1.9)-(CuO)_x(CSCO,x = 0,0.5,1.0,2.0和5.0%)粉末,并标记为CSO ,CSCO-0.5,CSCO-1,CSCO-2和CSCO-5。在900-1400℃下烧结相应的粒状样品,然后表征其可烧结性,机械和电性能。 CuO的添加降低了致密化烧结温度,并增强了机械强度,这归因于从晶界到晶界的断裂转变以及增加的密度。与在1400°C烧结的CSO相比,仅在900°C烧结的CSCO-1达到了相同的致密化程度,双轴弯曲强度从191±13 MPa显着提高到253±19 Mpa。化学成分的这种轻微改变也导致活化能降低,因此总电导率提高。

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