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Microwave-hydrothermal synthesis of nano-sized Sn2+-doped BaTiO3 powders and dielectric properties of corresponding ceramics obtained by spark plasma sintering method

机译:微波水热法合成纳米Sn2 +掺杂BaTiO3粉体及其放电等离子烧结陶瓷的介电性能

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摘要

Ternary oxides containing Sn2+ are rare and difficult to prepare using solid state reaction due to disproportionation of Sn2+ at high temperature. In this paper, nanoparticles of barium titanate doped with different amounts of Sn2+ consisting of single phase perovskite structure were successfully synthesized for the first time by using a microwave-assisted solvothermal reaction. The particle sizes were about 20-40 nm in diameter and increased with increasing the amount of doped tin. Solidified ceramic bodies were obtained using a spark plasma sintering method under argon atmosphere avoiding the disproportionation and oxidation of Sn2+ in the air. The grain size and dielectric constant of the sintered body decreased with increasing the amount of doped tin.
机译:含Sn2 +的三元氧化物非常稀少,由于高温下Sn2 +的歧化,很难用固态反应制备。本文通过微波辅助溶剂热反应首次成功合成了掺有不同量Sn2 +的单相钙钛矿结构组成的钛酸钡纳米粒子。颗粒直径为约20-40nm,并且随着掺杂锡的量增加而增加。在氩气气氛下使用火花等离子体烧结方法获得的固化陶瓷体避免了空气中Sn2 +的歧化和氧化。随着掺杂锡量的增加,烧结体的晶粒尺寸和介电常数减小。

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