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Properties of BaTiO3-Al2O3 composite oxide films prepared by sol-gel coating and anodization

机译:溶胶-凝胶涂覆和阳极氧化制备BaTiO3-Al2O3复合氧化物薄膜的性能

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High-voltage etched aluminum foils were coated with BaTiO3 (BT) films by vacuum infiltration using a sol. The specimens coated with the BT films were annealed at 450-550 degrees C for 10-90 min, and this procedure was repeated several times (n = 0, 1, 2, 4, and 8 cycles), after which the specimens were finally anodized at 100-500 V. The BT films coated on the high-voltage etched aluminum foils were crystallized when annealed at 550 degrees C for 30 min. The thickness of the BT-coated layer decreased after the anodization, proving that the BT-coated layers were decomposed by the anodization, likely contributing to the formation of a BT-Al2O3 (BT-Al) composite oxide layer between the inner BT-coated layer and the outer Al2O3 layer. The maximum specific capacitance (C-S) of the specimens was obtained after 4 cycles of BT coating. The specific capacitances of the BT-coated specimens were higher than those of the specimens without the BT-film coating. The withstanding voltages of the specimens were approximately 123, 330, and 545 V when the specimens were anodized at 100, 300, and 500 V, respectively. These results suggest the successful fabrication of BT-Al composite oxide films on high-voltage etched aluminum foils. (C) 2016 Elsevier B.V. All rights reserved.
机译:通过使用溶胶的真空渗透法,在高电压蚀刻的铝箔上涂上BaTiO3(BT)膜。将涂有BT膜的样品在450-550摄氏度下退火10-90分钟,然后重复几次此过程(n = 0、1、2、4和8个循环),然后将样品最终在100-500 V下进行阳极氧化。当在550摄氏度下退火30分钟时,涂在高压蚀刻铝箔上的BT薄膜会结晶。阳极氧化后,BT涂层的厚度减小,这证明BT涂层被阳极氧化分解,这可能有助于在内部BT涂层之间形成BT-Al2O3(BT-Al)复合氧化物层。层和外Al2O3层。经过4个BT涂层循环后,获得了样品的最大比电容(C-S)。涂有BT的样品的比电容高于没有涂BT膜的样品的比电容。当样品分别在100、300和500 V进行阳极氧化时,样品的耐压约为123、330和545V。这些结果表明在高压蚀刻的铝箔上成功制造了BT-Al复合氧化物膜。 (C)2016 Elsevier B.V.保留所有权利。

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