Strategies For Low-Temperature Sintering Of Bst Ceramics With Attractive Dielectric Properties

Jianquan Qi,Tianchi Yu,Mengying Li,Jiahui Xie, Cunle Bo, Hang Zhu,He Liu, Hengchang Wang,Yuxi Xie, Yilin Liu,Xiumei Han

JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS(2021)

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摘要
In this study, the powders of the Ba0.75Sr0.25TiO3 (BST) nanoparticles were directly synthesized by milling of Ba(OH)(2)center dot 8H(2)O, Sr(OH)(2)center dot 8H(2)O, and Ti(BuO)(4) in ethanol at room temperature. They have homogenous grains of similar to 15 nm and high sintering activity. The dense ceramics with the density > 90% can be obtained at a sintering temperature of <= 950 degrees C by adding 3 wt% sintering aids of Bi2O3 and Li2CO3. Several Bi-related intermediate compounds act as perovskite-structured templates to sintering the ceramics at a different temperature. They enhance the mass transfer and promote the sintering densification. These compounds such as Ba2BiO4 and SrBiO4 appear at 800 degrees C, LiBa4Bi3O11 and Sr1.2Bi0.8O3 appear over 830 degrees C, and Bi8.11Ba0.89O13.05 appears at 950 degrees C. The cation Bi in them can have mixture valences of 3+ and 5+. It makes the ceramics as semiconducting state with the dark gray color and decreases the ceramic resistivities. With the sintering temperature increase, especially at 950 degrees C, the cation Bi tends back to single valence of +3 in the ceramics. The most of alkaline earth cations in Bi-related compounds will release and resorb into the lattice of BST and drive the sintering densification. The BST ceramics can have a peak dielectric constant > 6500 (at 53 degrees C) with loss < 0.025 at 10 kHz, and resistivity > 10(12) Omega cm when sintered at a temperature of >= 900 degrees C with 3 wt% sintering aids. They have a potential application for multiple layer ceramic capacitors (MLCC) with silver inner electrodes.
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