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Nb掺杂TiO2压敏陶瓷的施主掺杂固溶度
引用本文:刘杰,严继康,甘国友,孙加林,易健宏.Nb掺杂TiO2压敏陶瓷的施主掺杂固溶度[J].材料科学与工程学报,2011(1):70-73.
作者姓名:刘杰  严继康  甘国友  孙加林  易健宏
作者单位:昆明理工大学材料与冶金工程学院
基金项目:云南省自然科学基金资助项目(2008ZC014M)
摘    要:研究了不同烧结温度TiO2压敏陶瓷的显微结构、施主掺杂固溶度和电学性能。采用SEM和EDS测试了其显微结构和晶粒化学组成。随烧结温度增加,TiO2晶粒迅速长大,显微结构均匀致密,但过高的烧结温度将导致较多气孔。1350℃为比较合适的烧结温度,其晶粒大小为15μm左右。在施主掺杂浓度一定的条件下,施主掺杂离子Nb5+在TiO2晶粒中的固溶度、晶粒电子浓度和电导率随烧结温度上升而增加,晶粒电阻率随烧结温度上升而下降。以能谱中O为参考确定TiO2晶格数量计算得到的固溶度及其电学性能更符合实验测试结果。

关 键 词:TiO2  烧结温度  显微结构  固溶度  EDS

Solid Solubility of Donor Dopant in Nb-doped TiO2 Varistor Ceramics
LIU Jie,YAN Ji-kang,GAN Guo-you,SUN Jia-lin,YI Jian-hong.Solid Solubility of Donor Dopant in Nb-doped TiO2 Varistor Ceramics[J].Journal of Materials Science and Engineering,2011(1):70-73.
Authors:LIU Jie  YAN Ji-kang  GAN Guo-you  SUN Jia-lin  YI Jian-hong
Affiliation:(Faculty of Materials and Metallurgical Engineering,Kunming University of Science and Technology,Kunming 650093,China)
Abstract:Microstructure,donor doping solid solubility and electrical properties of TiO2 varistor ceramics sintered at different temperatures were investigated.Microstructures and grain compositions of samples were studied by scanning electron microscopy(SEM) and X-ray energy-dispersive spectroscopy(EDS).With increasing sintering temperature,TiO2 grains grow quickly and a compact and homogeneous microstructure was obtained.The TiO2 ceramic sample sintered at an over high temperature contained some pores.For TiO2 varistor ceramics,1350℃ is the reasonable sintering temperature and the grain size of the TiO2 sample is about 15 μm.For a constant concentration of donor doping,solid solubility of donor Nb5+ in TiO2 grains,electron concentration and electrical conduction of TiO2 grains increase but resistivity decrease with increasing sintering temperature.The number of TiO2 lattices in TiO2 ceramics is determined by O mol ratio in EDS analysis,and that solid solubility and electrical properties,which were calculated from the number of TiO2 lattices,Nb and Ti mol ratio in EDS, coincide better with experimental results.
Keywords:TiO2  sintering temperatures  microstructures  solid solubility  EDS
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