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Covering anodized aluminum with electropolymerized polypyrrole via manganese oxide layer and application to solid electrolytic capacitor

机译:经由氧化锰层用电聚合聚吡咯覆盖阳极氧化铝,并应用于固体电解电容器

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摘要

A new technology for covering an etched and anodized aluminum (Al) foil with polypyrrole (PPy) was developed. PPy was electro-polymerized from an external electrode via an extremely thin semiconducting manganese oxide layer prepared on the etched and anodized Al foil in advance. Pyrolytic and reduced manganese oxide could be used with little difference in the performance of the PPy layer growth. To obtain a high coverage ratio, the optimal starting materials were manganese nitrate for the pyrolysis process and sodium permanganate for the reduction process. On the basis of the technology, two kinds of Al solid electrolytic capacitors, in which the PPy layers are used as electrolytes, were produced and characterized. These capacitors showed almost equal ideal impedance-frequency characteristics, excellent temperature characteristics and environmental stability, and independence of the manganese oxide synthesis route.
机译:开发了一种用聚吡咯(PPy)覆盖经过蚀刻和阳极氧化的铝(Al)箔的新技术。通过预先在蚀刻和阳极氧化的铝箔上制备的极薄的半导体氧化锰层,从外部电极对PP进行电聚合。可以使用热解和还原的氧化锰,而PP​​y层的生长性能几乎没有差异。为了获得高覆盖率,最佳原料是热解过程中的硝酸锰和还原过程中的高锰酸钠。在此技术的基础上,生产并表征了两种以PPy层为电解质的Al固体电解电容器。这些电容器表现出几乎相等的理想阻抗-频率特性,出色的温度特性和环境稳定性以及氧化锰合成路线的独立性。

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