以硝酸锆、硝酸钆和柠檬酸为原料,按n(Gd):n(Zr)分别为1:99、3:97、5:95、8:92和10:90的配比在1 200℃煅烧6h制备了稀土Gd掺杂ZrO2试样,以研究Gd与ZrO2的化学相容性;进而按n(Gd2Zr2O7):n(ZrO2)分别为1:10、1:8、1:4、1:2、1:1、4:1和8:1的配比于1 200℃煅烧6h原位合成了Gd2 Zr2O7-ZrO2复合材料.采用XRD和拉曼光谱研究了稀土Gd掺杂ZrO2和Gd2 Zr2O7-ZrO2复合材料的物相组成和结构.结果表明:稀土Gd容易进入ZrO2晶格形成固溶体,当稀土Gd掺杂量较少时,随着稀土Gd掺杂量的增加,m-ZrO2逐渐转变为t-ZrO2;当稀土Gd添加量较多时,随着Gd量的增加,逐渐原位生成了萤石结构的稀土锆酸盐Gd2Zr2O7,从而合成了由Gd2 Zr2O7和t-ZrO2构成的Gd2 Zr2 O7 - ZrO2复合材料.
参考文献
[1] | 高龙柱 .纳米氧化锆制备及晶型控制的水热法研究[D].南京工业大学,2004. |
[2] | Tani E;Yoshimura M .Formation of ultrafine tetragonal ZrO2 power under hydrothermal conditions[J].Journal of the American Ceramic Society,1983,66(01):11-14. |
[3] | G. Dell'Agli;S. Esposito;G. Mascolo .Films by slurry coating of nanometric YSZ (8 mol percent Y_2O_3) powders synthesized by low-temperature hydrothermal treatment[J].Journal of the European Ceramic Society,2005(12):2017-2021. |
[4] | 马中义,徐润,杨成,魏伟,李文怀,孙予罕.不同形态ZrO2的制备及其表面性质研究[J].物理化学学报,2004(10):1221-1225. |
[5] | Monte F.;Larsen W. .Stabilization of Tetragonal ZrO_2 in ZrO_2-SiO_2 Binary Oxides[J].Journal of the American Ceramic Society,2000(3):628-634. |
[6] | K.J.Puolakka;S.Juutilainen;A.O.I.Krause .Combined CO_2 reforming and partial oxidation of n-heptane on noble metal zirconia catalysts[J].Catalysis Today,2006(1/4):217-221. |
[7] | A. Barbucci;M. Viviani;P. Carpanese;D. Vladikova;Z. Stoynov .Impedance analysis of oxygen reduction in SOFC composite electrodes[J].Electrochimica Acta,2006(8/9):1641-1650. |
[8] | Matsumoto M;Aoyama K;Matsubara H;Takayama K;Banno T;Kagiya Y;Sugita Y .Thermal conductivity and phase stability of plasma sprayed ZrO2-Y2O3-La2O3 coatings[J].Surface & Coatings Technology,2005(1):31-35. |
[9] | Saruhan B;Francois P;Fritscher K;Schulz U .EB-PVD processing of pyrochlore-structured La2Zr2O7-based TBCs[J].Surface & Coatings Technology,2004(2/3):175-183. |
[10] | Xueqiang Cao;Robert Vassen;Werner Fischer;Frank Tietz;Wolfgang Jungen;Detlev Stover .Lanthanum-Cerium Oxide as a Thermal Barrier-Coating Material for High-Temperature Applications[J].Advanced Materials,2003(17):1438-1442. |
[11] | Vassen R.;Cao X. .Zirconates as New Materials for Thermal Barrier Coatings[J].Journal of the American Ceramic Society,2000(8):2023-2028. |
[12] | Li J Y;Dai H;Li O et al.Lanthanum zirconate nanofibets with high sintering resistance[J].Materials Science and Engineering B:Solid-state materials for advanced technology,2006,133(1-3):209-212. |
[13] | Cao X Q;Vassen R;Stoever D .Ceramic materials for thermal barrier coatings[J].Journal of the European Ceramic Society,2004,24:1-10. |
[14] | 李美俊,陈钧,韩波,冯兆池,应品良,辛勤,李灿.紫外拉曼光谱研究钇掺杂的氧化锆体系表面相变[J].光散射学报,2002(02):76-81. |
[15] | Poulsen FW.;Holtappels P.;Glerup M. .Structure, Raman spectra and defect chemistry modelling of conductive pyrochlore oxides[J].Solid state ionics,2000(1/4):595-602. |
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