Phase Transition Monitoring and Temperature Sensing Via FIR Technology in Bi/Sm‐codoped KNN Transparent Ceramics
JOURNAL OF THE AMERICAN CERAMIC SOCIETY(2024)
摘要
The phase transition temperature (e.g., that of orthorhombic-tetragonal TO-T) of relaxor ferroelectrics are commonly obtained through electrical method (i.e., temperature dependence of dielectric constant), and the samples need to be coated with metal electrode and tested by a sophisticated impedance analyzer. This contact measuring method is inefficient, inconvenient and easy to damage the sample surface, inapplicable to transparent ferroelectrics. Here, we successfully fabricated Bi/Sm co-doped K0.5Na0.5NbO3 transparent ceramics with photoluminescent behavior and relaxor-like ferroelectricity, which simultaneously realized TO-T monitoring and temperature sensing via fluorescence intensity ratio (FIR) technology. This simple, rapid, noncontact and nondestructive optical way displays small TO-T deviation (merely 0.78%) compared to the electrical method. And the temperature-dependent optical characteristics and coercive electric field all present abrupt changes, whose abnormal temperature regions are in accordance with that around TO-T. In addition, the maximum absolute sensitivity and relative sensitivity of the ceramics reach 0.0072 K-1 (at 533 K) and 0.0111 K-1 (at 453 K), respectively, exhibiting superior optical temperature sensing performance. The tactical use of FIR technology is of great significance for widening the applications of luminescent-ferroelectric transparent ceramics.
更多查看译文
关键词
ferroelectrics,FIR technology,K0 5Na0 5NbO3,optical temperature sensing,phase transition monitoring
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
数据免责声明
页面数据均来自互联网公开来源、合作出版商和通过AI技术自动分析结果,我们不对页面数据的有效性、准确性、正确性、可靠性、完整性和及时性做出任何承诺和保证。若有疑问,可以通过电子邮件方式联系我们:report@aminer.cn