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Study on the Properties of Nanometer CeO_2 Doped with Zr^(4+),La^(3+),Pr^(3+) 被引量:1

Study on the Properties of Nanometer CeO_2 Doped with Zr^(4+),La^(3+),Pr^(3+)
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摘要 Different nanometer CeO_2-ZrO_2 mixed oxides doped with lanthanum or praseodymium were prepared by coprecipi-tation. The characteristics of all mixed oxides were tested by XRD, SEM, TEM, and XPS. XRD results showed thatall oxides were formed solid solution with CaF_2 structure at low temperature and had good thermal stability. MoreCe^(4+) ions were rich on the surface by XPS, which were beneficial to oxygen storage. The particle mediun sizes (d_(50))of all oxides powders were approximately 10~20 nm by small angle scattering goniometer. When doped Zr^(4+) inCeO_2, the specific surface areas were improved at low or high temperature. The area of Ce_(0.6)Zr_(0.3)La_(0.04)Pr_(0.06)O_2powder had excess 110 m^2/g after calcining at 923 K for 4 h, even calcined at 1273 K for 4 h, the area was up to65 m^2/g. Different nanometer CeO_2-ZrO_2 mixed oxides doped with lanthanum or praseodymium were prepared by coprecipi-tation. The characteristics of all mixed oxides were tested by XRD, SEM, TEM, and XPS. XRD results showed thatall oxides were formed solid solution with CaF_2 structure at low temperature and had good thermal stability. MoreCe^(4+) ions were rich on the surface by XPS, which were beneficial to oxygen storage. The particle mediun sizes (d_(50))of all oxides powders were approximately 10~20 nm by small angle scattering goniometer. When doped Zr^(4+) inCeO_2, the specific surface areas were improved at low or high temperature. The area of Ce_(0.6)Zr_(0.3)La_(0.04)Pr_(0.06)O_2powder had excess 110 m^2/g after calcining at 923 K for 4 h, even calcined at 1273 K for 4 h, the area was up to65 m^2/g.
出处 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2004年第3期357-360,共4页 材料科学技术(英文版)
关键词 CERIA-ZIRCONIA Solid solution NANOMETER High surface area Ceria-zirconia Solid solution Nanometer High surface area
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  • 1E.S. Putna,J.M. Vohs,R.J. Gorte,G.W. Graham.An examination of praseodymia as an oxygen‐storage component in three‐way catalysts[J].Catalysis Letters (-).1998(1-2)
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