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Anodic oxidization of Ti-Ni-Si amorphous alloy ribbons and their capacitive and resistive properties

机译:Ti-Ni-Si非晶态合金薄带的阳极氧化及其电容和电阻特性

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摘要

Amorphous titanium oxide film on Ti-Ni-Si amorphous alloy ribbons was prepared by anodic polarization process in ten kinds of electrolyte solutions. Addition of NH4F in (NH4)(2)SO4 solution accelerates an increase in current, i.e. formation of soluble Ti-fluoride complexes, resulting in the amorphous titanium oxide layers with nanometer-sized pores. Pore size decreases down to 12 nm with decreasing of applied voltage from 30 to 5 V. However, parallel capacitance Cp, series capacitance Cs, and RCs constant increase with decrease of pore size from 23 to 18 nm and then decrease in pore size region from 18 to 12 nm by formation of penetrating tunnels in the layer. It needs further enhancement of RCs for realization of superior electric storage capacitor. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过阳极极化工艺在十种电解液中制备了Ti-Ni-Si非晶合金薄带上的非晶氧化钛膜。在(NH4)(2)SO4溶液中添加NH4F可以加速电流的增加,即形成可溶性的Ti-氟化物络合物,从而形成具有纳米级孔的无定形氧化钛层。随着施加电压从30 V减小到5 V,孔径减小到12 nm。但是,并联电容Cp,串联电容Cs和RCs随孔径从23 nm减小到18 nm而不断增加,然后从通过在层中形成穿透隧道形成18至12 nm。为了实现优质的蓄电电容器,需要进一步增强RC。 (C)2015 Elsevier B.V.保留所有权利。

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