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Effect of Oxygen Concentration and Tantalum Addition on the Formation of High Temperature Bismuth Oxide Phase by Mechanochemical Reaction

机译:氧浓度和钽的加入对机械化学反应形成高温氧化铋相的影响

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摘要

High-temperature face-centered cubic bismuth oxide phase is a material of great interest given its unique properties. In the present study, α-Bi2O3 and tantalum powders were used as the starting powders for the formation of high-temperature bismuth oxide phase via mechanochemical synthesis by high energy ball milling. (Bi2O3)80(Ta)20 and (Bi2O3)95(Ta)5 in weight concentrations were milled in either an oxygen-free argon-filled glove box environment or an ambient atmosphere to investigate the effects of oxygen concentration and tantalum addition. The as-milled powders were examined using X-ray diffraction, scanning electron microscopy with energy-dispersive spectroscopy, and differential scanning calorimetry to reveal the structural evolution. The experimental results showed that for (Bi2O3)95(Ta)5 powder mixtures milled within the glove box, tantalum gradually reacted with the α-Bi2O3 phase and formed a β-Bi7.8Ta0.2O12.2 phase. For (Bi2O3)80(Ta)20 milled under the same conditions, Ta and α-Bi2O3 mechanochemically reacted to form δ-Bi3TaO7 and bismuth after 10 min of high energy ball milling, whereas milling (Bi2O3)80(Ta)20 under the ambient atmosphere with a much higher oxygen concentration accelerated the mechanochemical reaction to less than five minutes of milling and resulted in the formation of high-temperature δ-Bi3TaO7 phase.
机译:鉴于其独特的性能,高温面心立方氧化铋是一种备受关注的材料。在本研究中,α-Bi2O3和钽粉被用作通过高能球磨机械化学合成形成高温氧化铋相的原料粉末。在无氧氩气手套箱环境或周围环境中研磨重量浓度为(Bi2O3)80(Ta)20和(Bi2O3)95(Ta)5的粉末,以研究氧气浓度和钽添加的影响。使用X射线衍射,具有能量色散光谱的扫描电子显微镜和差示扫描量热法检查研磨后的粉末,以揭示结构演变。实验结果表明,对于在手套箱内研磨的(Bi2O3)95(Ta)5粉末混合物,钽逐渐与α-Bi2O3相反应并形成β-Bi 7.8 Ta 0.2 O 12.2 阶段。对于在相同条件下研磨的(Bi 2 O 3 80 (Ta) 20 ,Ta和α-高能10分钟后,Bi 2 O 3 机械化学反应形成δ-Bi 3 TaO 7 和铋球磨,而(Bi 2 O 3 80 (Ta) 20 较高的氧浓度将机械化学反应加速至不到五分钟的研磨时间,并导致高温δ-Bi 3 TaO 7 相的形成。

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