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Anodic oxidization of Al-Y amorphous alloy ribbons and their capacitive properties

机译:Al-Y非晶合金带及其电容性能的阳极氧化

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摘要

Blackish amorphous aluminium oxide film on AlY10 amorphous alloy ribbons was prepared by anodic polarization process in H2SO4 solutions, showing electric storage on uneven surfaces with a convexity of 18 nm in diameter. The longest discharging time was obtained by current ratio (I-2/I-1) of 0.4 at 16 V and 5 mass% H2SO4. The discharging time increases and decreases with increasing charging time and charging current, and then saturates after around 100 s and 1 mu A, respectively. The resulting film shows a vertical line after Warburg region in a Nyquist diagram, rapid increases in the imaginary impedance, and a phase angle of -90 degrees at 1 mHz in the Bode diagram, demonstrating evidence for use in an electric distributed constant circuit. The film indicates a switching effect for both positive (similar to+8.6 eV) and negative (similar to-11.2 eV) potentials. (C) 2018 Elsevier B.V. All rights reserved.
机译:通过H2SO4溶液中的阳极偏振工艺制备Aly10非晶合金带上的黑色非晶铝氧化物膜,在不均匀的表面上显示蓄电,凸起为18nm。 通过在16V和5质量%H 2 SO 4下的0.4的电流比(I-2 / I-1)获得最长的排出时间。 排出时间随着充电时间和充电电流的增加而增加并且减少,然后分别在大约100秒和1μA之后饱和。 所得到的薄膜在奈奎斯特图中显示Warburg区域之后的垂直线,在假想阻抗中快速增加,并且在伯德图中在1 MHz中的相位角度为-90度,证明了用于电力分布式恒定电路的证据。 该薄膜表示正(类似于+ 8.6eV)和负(类似于-11.2eV)电位的切换效果。 (c)2018年elestvier b.v.保留所有权利。

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