首页> 外文会议>COST(Co-Operating in Science and Technology) 525 Meeting Oct, 2001 Aveiro, Portugal >Investigation of Barium Titanate Ceramics by Oxygen Coulometry
【24h】

Investigation of Barium Titanate Ceramics by Oxygen Coulometry

机译:氧库仑法研究钛酸钡陶瓷

获取原文
获取原文并翻译 | 示例

摘要

The application of the oxygen coulomelry method to the investigation of the defect chemistry and the sintering process of donor and acceptor doped barium titanate ceramics is introduced. The measuring device is based on two identical ZrO_2 Nernst cells which are used both for the determination of the oxygen partial pressure and for the pumping of oxygen. Several examples for the application of the method are presented. 1. The measurement of the change of the equilibrium oxygen vacancy concentration with respect to a temperature change at a fixed oxygen partial pressure. 2. The investigation of the change of the valency state of acceptor-type 3d transition elements in dependence on the ambient oxygen partial pressure. It is shown that Mn_(Ti) occurs as Mn~(3+) at an oxygen partial pressure of 2.4 Pa and a temperature of about 1400℃. 3. The oxygen release during the sintering of donor doped BaTiO_3 has proved that the incorporation of at least a partial amount of the donor dopant takes place only during the anomalous grain growth. This supports Drofcnik's model for the doping anomaly of barium titanate ceramics. In the whole doping range up to a maximum amount of 5 mol% La_(Ba), the estimated amount of expelled oxygen is less than that expected for exclusive electronic donor compensation.
机译:介绍了氧固熔法在供体和受体掺杂钛酸钡陶瓷的缺陷化学研究和烧结过程中的应用。该测量装置基于两个相同的ZrO_2 Nernst池,它们既用于确定氧气分压,又用于输送氧气。给出了该方法应用的几个例子。 1.在固定的氧气分压下,相对于温度变化的平衡氧气空位浓度变化的测量。 2.研究取决于环境氧分压的受体型3d过渡元素的价态变化。结果表明,在2.4 Pa的氧分压和约1400℃的温度下,Mn_(Ti)以Mn〜(3+)的形式出现。 3.已证明在掺杂给体掺杂的BaTiO_3的烧结过程中释放的氧气表明,至少部分量的给体掺杂剂的掺入仅在异常晶粒生长期间发生。这支持了Drofcnik的钛酸钡陶瓷掺杂异常模型。在最高不超过5摩尔%La_(Ba)的整个掺杂范围内,估计的排出氧气量小于专用电子施主补偿的预期排出量。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号