材料科学
铁电性
电介质
陶瓷
退火(玻璃)
分析化学(期刊)
弛豫铁电体
兴奋剂
矿物学
复合材料
化学
光电子学
色谱法
作者
Qiwei Zhang,Jiwei Zhai,Hongqiang Li,Zhenxing Yue,Ling Bing Kong
标识
DOI:10.1002/pssa.201330269
摘要
MnCO 3 ‐modified Ba(Zr 0.3 Ti 0.7 )O 3 relaxor ferroelectric ceramics were fabricated by using the solid‐state reaction method. The temperature dependences of electrical and dielectric properties of the ceramics were systematically investigated over the range −140 to 400 °C. The typical ferroelectric relaxor behavior of the Ba(Zr 0.3 Ti 0.7 )O 3 ceramics was greatly suppressed by adding a proper amount of MnCO 3 . The suppressed relaxor behavior can be restored by annealing the samples in air, which is attributed to the presence of oxygen vacancies in the samples. In the paraelectric phase region, the low‐frequency dielectric relaxations associated with oxygen vacancies are observed above room temperature, and increase with increasing of Mn content. Compared to the undoped Ba(Zr 0.3 Ti 0.7 )O 3 ceramic, Mn‐doped samples display excellent temperature stability in a wide temperature. The critical composition of x = 0.05 (MnCO 3 ) not only exhibits a lower degree of ferroelectric relaxor behavior (Δ T m = 5.6 K), but also maintains a relatively higher tunability (66.9%@30 kV cm −1 ) than that of pure Ba(Zr 0.3 Ti 0.7 )O 3 (Δ T m = 16.5 K, 49.6%@30 kV cm −1 ).
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