钛酸钡
介电常数
材料科学
电介质
铁电性
陶瓷
兴奋剂
相对介电常数
钛酸酯
矿物学
化学工程
光电子学
复合材料
化学
工程类
作者
Qiaomei Sun,Qilin Gu,Kongjun Zhu,Rongying Jin,Jinsong Liu,Jing Wang,Jinhao Qiu
摘要
Abstract Dielectric materials with high permittivity are strongly demanded for various technological applications. While polarization inherently exists in ferroelectric barium titanate (BaTiO 3 ), its high permittivity can only be achieved by chemical and/or structural modification. Here, we report the room-temperature colossal permittivity (~760,000) obtained in x Nd: BaTiO 3 ( x = 0.5 mol%) ceramics derived from the counterpart nanoparticles followed by conventional pressureless sintering process. Through the systematic analysis of chemical composition, crystalline structure and defect chemistry, the substitution mechanism involving the occupation of Nd 3+ in Ba 2+ -site associated with the generation of Ba vacancies and oxygen vacancies for charge compensation has been firstly demonstrated. The present study serves as a precedent and fundamental step toward further improvement of the permittivity of BaTiO 3 -based ceramics.
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