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Effect of Bi2O3 Additive on the Microstructure and Dielectric Properties of BaTiO3-Based Ceramics Sintered at Lower Temperature

Shunhua Wu Xuesong Wei Xiaoyong Wang Hongxing Yang Shunqi Gao

材料科学技术(英文)

High performance X8R dielectric ceramics were prepared by doping Bi2O3 to BaTiO3-based ceramics. The effect of small amounts (≤1.2 mol%) of Bi2O3 additive on the microstructure and dielectric properties of BaTiO3-based ceramics have been investigated. The Bi2O3, acting as a sintering additive, can effectively lower the sintering temperature of BaTiO3-based ceramics from 1300 to 1130°C. The bulk density of BaTiO3-based ceramics increased and reached the maximum value with increasing Bi2O3 content. The dielectric constant increased with increasing Bi2O3 until it reached the maximum value with 0.8 mol% Bi2O3 additive, and the dielectric loss decreased with increasing Bi2O3 content. Optimal dielectric properties of ε=2470, tanδ=0.011 and Δε/ε25≤±9% (-55-150°C) were obtained for the BaTiO3-based ceramics doped with 0.8 mol% Bi2O3 sintered at 1130°C for 6 h.

关键词: BaTiO3-based ceramics , Bi2O3 , Dielectric properties , X8R

掺杂钇铋Ce-Zr-Al储氧材料的制备及性能研究

祝清超 , 黎秀敏 , 李红梅 , 郑灵敏 , 陈耀强 , 龚茂初

无机材料学报 doi:10.3724/SP.J.1077.2010.00013

采用共沉淀法制备了掺杂Y3+、Bi3+的CeO2-ZrO2-Al2O3(CZA)储氧材料, 并通过XRD、低温N2吸附-脱附、氧脉冲吸附(OSC)及H2-TPR等手段进行了表征. XRD结果表明, 600℃和1000℃焙烧后, Y3+、Bi3+的加入没有改变物相结构, 所有样品均形成单一立方相萤石结构固溶体. 低温N2吸附结果表明, Y3+掺杂的Ce0.6Zr0.3Y0.1O1.95-Al2O3(CZYA)材料, 其织构性能及热稳定性都有很大的改善, 1000℃老化5h后, 比表面积和孔容可分别达80.75m2/g 和0.22mL/g. OSC和H2-TPR结果表明, 同时掺杂Y3+、Bi3+的Ce0.6Zr0.2Y0.1Bi0.1O1.9-Al2O3(CZYBA)材料, 其储氧性能明显增强, 经600和1000℃焙烧后分别达到461和242μmol/g; 同时掺杂Y3+、Bi3+增强了CZA材料的还原性能, 1000℃老化5h后还原峰温度从546℃降低到429℃.

关键词: CeO2-ZrO2-Al2O3 , Bi2O3 , oxygen storage capacity , redox property

ZnO-Bi2O3混合氧化物厚膜的结构和气敏性能

祝柏林 , 谢长生 , 曾大文 , 王爱华 , 宋武林

无机材料学报

采用金属蒸气氧化的方法制备了针状ZnO和椭球形Bi2O3纳米颗粒作为气敏厚膜的原材料,其中得到的Bi2O3为δ相和β相的混合物.通过XRD和SEM分析了ZnO、Bi2O3 以及ZnO-Bi2O3混合物厚膜的物相和表面形貌,并测试了厚膜的电导和气敏性能.结果发现纯Bi2O3对乙醇和丙酮蒸气有一定的气敏性能,表现为P型导电;与纯ZnO相比,ZnO-Bi2O3 混合物厚膜对苯、甲苯和二甲苯的敏感度降低,这与厚膜晶粒尺寸增大、其晶界势垒高度增大有关,然而Bi2O3可能作为一种弱的催化剂提高了厚膜对乙醇和丙酮的敏感性能.

关键词: ZnO , Bi2O3 , nanoparticles , conductivity , gas-sensitivity

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