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Synthesis and Characterization of Sm_xGd_yCe_(1-x-y)O_(2-δ) Nanopowders
作者姓名:Xiwen SONG  Yongwang ZHAO  Zhefeng WANG  Jun PENG  Wenguang ZHAO and Shengli AN School of Materials Science and Engineering  Inner Mongolia University of Science and Technology  Baotou  China School of Metallurgical and Ecological Engineering  University of Science and Technology Beijing  Beijing  ChinaAssoc. Prof.
作者单位:Xiwen SONG,Yongwang ZHAO,Zhefeng WANG,Jun PENG,Wenguang ZHAO and Shengli AN School of Materials Science and Engineering,Inner Mongolia University of Science and Technology,Baotou 014010,China School of Metallurgical and Ecological Engineering,University of Science and Technology Beijing,Beijing 100083,ChinaAssoc. Prof.
摘    要:SmxGdyCe1-x-yO2-δ (x+y=0.2 and x=0, 0.04, 0.08, 0.12, 0.16, 0.2) nanopowders were prepared by a copre-cipitation method. The zeta potential and sedimentation volume of Ce(OH)4 aqueous dispersions at different pH values were measured. The isoelectric point (IEP) of Ce(OH)4 suspensions is 7.0. The maximum potential value of -18.5 mV and maximum sedimentation volume of 19 ml are reached at pH=10. The evolution behaviors of the xSm(OH)3·yGd(OH)3·(1-x-y)Ce(OH)4 dried powders in the heating process was characterized by DTA/TG and XRO. The powders decompose to ceria based solid solution at a temperature below 300℃ and forms cubic fluorite structure ceria at about 650℃. The properties of SmxGdyCe1-x-yO2-δ solid solutions were characterized by XRD, TEM and BET. The lattice parameter of doped Ce02 increases linearly with increasing Sm3+ substitution (or decreasing Gd3+ substitution). The particle size of the doped ceria powders is from 5 nm to 10 nm.

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