Enhanced breakdown strength and dielectric loss of Ca 1−3 x /2 Eu x Cu 3 Ti 4 O 12 ceramics prepared by polymer pyrolysis

Jianhua Zhang, Tao Deng, Peng Li, Yalu Lv, Yanxin Nan,Zhipeng Lei,Yuanyuan Li,Lu Li

Journal of Materials Science: Materials in Electronics(2024)

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摘要
The CaCu 3 Ti 4 O 12 (CCTO) ceramic is characterized by high dielectric constant, but its elevated dielectric loss (tan δ ) and low breakdown field strength ( E b ) limit its practical applications in small electronic devices. Therefore, Ca 1−3 x /2 Eu x Cu 3 Ti 4 O 12 ( x = 0, 0.2, 0.4, and 0.6) samples were prepared through a combined strategy of substituting with rare earth element and polymer pyrolysis method to improve the tan δ and E b . XRD analysis revealed that main phase of CCTO was formed in all samples, and Eu 3+ ions were incorporated into the lattice. These results suggest that the low concentrations of Eu facilitate grain growth. However, as the concentration increases, it begins to have an inhibitory effect on grain growth, consequently resulting in an elevated grain boundary density. Moreover, the results demonstrated that the addition of Eu enhanced the E b , reduced the tan δ , and improved the temperature stability of the CCTO ceramics. Interestingly, impedance analysis reveals a notable enhancement in grain boundary resistance. Notably, the Ca 0.4 Eu 0.4 Cu 3 Ti 4 O 12 sample demonstrated an exceptionally high grain boundary resistance of 6.62 × 10 10 Ω cm, surpassing that of pure CCTO by over 100-fold. Ca 1−3 x /2 Eu x Cu 3 Ti 4 O 12 ceramics possess low loss and high breakdown performance, making them promising materials in capacitors.
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