首页> 外文期刊>Journal of Electronic Materials >Preparation of Nb2O5-Al2O3 Composite Anodic Oxide Film for an Aluminum Electrolytic Capacitor by Electrodeposition-Annealing and Anodization
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Preparation of Nb2O5-Al2O3 Composite Anodic Oxide Film for an Aluminum Electrolytic Capacitor by Electrodeposition-Annealing and Anodization

机译:电沉积 - 退火和阳极氧化制备铝电解电容器的Nb2O5-Al2O3复合阳极氧化膜

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摘要

Nb was electrodeposited on etched aluminum foils for an Al electrolytic capacitor. After annealing at 500 degrees C in air, the foils were anodized in H3BO4 solution at 530 V to form Nb2O5-Al2O3 composite anodic oxide film as a dielectric layer. The voltage-time variations during the anodization process were monitored. The structure, composition, and electrical properties of the anodized foils were investigated by scanning electron microscopy, transmission electron microscopy, x-ray diffraction and electrochemical impedance spectroscopy. The obtained foils were assembled into aluminum electrolytic capacitors, and the capacitor performance was tested according to the Japanese Nichicon standard. It was found that after electrodeposition and annealing, the slope of the voltage-time curve of the aluminum foil became steeper during the anodization process. The composite anodic oxide film showed a triple-layer structure consisting of Nb2O5/Al-NbOx/Al2O3 layers. The specific capacitance (C and C-ox) of the composite anodic film was about 14% greater than that of the aluminum anodic oxide film. However, the leakage current (I) of the composite film was increased and its specific resistance (R-ox) and withstanding voltage (U-w) decreased relative to the aluminum anodic oxide film, probably due to the greater number of intrinsic defects. During the load life and shelf life test, the composite anodic oxide film demonstrated capacitor performance similar to that of the aluminum anodic film, and can thus be used as a dielectric layer for capacitors to enhance specific capacitance.
机译:在蚀刻的铝箔上电沉积Nb,用于Al电解电容器。在500摄氏度的空气中进行退火后,在530V下在H3BO 4溶液中阳极氧化箔以形成Nb2O5-Al 2 O 3复合氧化氧化物氧化膜作为介电层。监测阳极化过程中的电压时间变化。通过扫描电子显微镜,透射电子显微镜,X射线衍射和电化学阻抗光谱研究了阳极氧化箔的结构,组合物和电性能。将得到的箔组装成铝电解电容器,并且根据日本镍铬镍标准测试电容器性能。发现在电沉积和退火之后,铝箔的电压时曲线的斜率在阳化过程中变得陡峭。复合阳极氧化膜显示出由Nb2O5 / Al-Nox / Al2O3层组成的三层结构。复合阳极膜的比电容(C和C-OX)大于铝阳极氧化膜的约14%。然而,复合膜的漏电流(I)增加,其特异性电阻(R-OX)和耐压电压(U-W)相对于铝阳极氧化物膜降低,可能是由于较大数量的内在缺陷。在负载寿命和保质期测试期间,复合阳极氧化物膜的表现出类似于铝阳极膜的电容器性能,因此可以用作用于增强特定电容的电容器的介电层。

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