首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Rapid synthesis and electrical transition in p-type delafossite CuAlO2
【24h】

Rapid synthesis and electrical transition in p-type delafossite CuAlO2

机译:p型铜铁矿CuAlO2的快速合成和电跃迁

获取原文
获取原文并翻译 | 示例
       

摘要

Highly polycrystalline and pure delafossite phase CuAlO2 powder has been synthesised within a short annealing period, shorter than most conventional processes. This is an improvement over the conventional synthesis procedures. The conventional synthesis procedure has seen CuAIO2 only formed at high annealing temperatures ≥1100 °C over long annealing time, some as long as 96 hours. In the current process, a pure phase devoid of impurities has been obtained at a reduced calcination time of 1.5 hours in an argon atmosphere at a temperature of 1150 °C. This was confirmed by XRD and SEM/ EDX. High temperature DC/AC electrical measurements show a change in the conduction mechanism from mixed conductivity (ionic + p-type) in the temperature range of 375 ≥ T ≥ 25 °C to intrinsic type behavior above 375 °C. The activation energies for these two regimes are 0.27 eV and 0.08 eV respectively. This change from mixed to p-type conductivity is confirmed by spectral analysis also. Spectral analysis using the power law also revealed that conduction is of long range hopping. The use of platinum as a contact electrode at elevated temperatures has a detrimental effect on the electrical properties since it encourages the formation of CuAl2O4 at the interface due to the formation of a more stable Cu-Pt alloy by virtue of the chemical reaction Pt + 2CuAlO2->CuAl2O4 + Pt_(cu).
机译:高度多晶且纯的铜铁矿相CuAlO2粉末已在较短的退火时间内合成,比大多数常规工艺要短。这是对常规合成方法的改进。常规合成程序已经看到,CuAIO2仅在≥1100°C的高退火温度下经过较长的退火时间(有些长达96小时)形成。在当前的方法中,在氩气气氛中在1150℃的温度下,在1.5小时的减少的煅烧时间下,获得了无杂质的纯相。 XRD和SEM / EDX证实了这一点。高温DC / AC电测量显示出传导机理从375≥T≥25°C的温度范围内的混合电导率(离子+ p型)变化到375°C以上的本征型行为。这两个方案的活化能分别为0.27 eV和0.08 eV。从混合电导率到p型电导率的这种变化也可以通过光谱分析得到证实。使用幂律的频谱分析还显示,传导具有远距离跳变。在高温下使用铂作为接触电极会对电性能产生不利影响,因为通过化学反应Pt + 2CuAlO2可以形成更稳定的Cu-Pt合金,从而鼓励在界面处形成CuAl2O4。 -> CuAl2O4 + Pt_(cu)。

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