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Characteristics of aluminium solid electrolytic capacitors using a conducting polymer

机译:使用导电聚合物的铝固体电解电容器的特性

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In order to form an electrochemically polymerized polypyrrole film on an electrically insulated dielectric layer surface, a conductive precoating layer was first deposited, at the expense of electrical conductivity. Using the precoating layer as the anode, a polypyrrole layer was then deposited electrochemically in preparation for the fabrication of a solid electrolytic capacitor in which the composite conducting polymer layer was used as a solid electrolyte. Soluble polyaniline could be used as a conductive precoating layer as well as polypyrrole formed by chemical oxidizing polymerization. The capacitor using the composite solid electrolyte presented excellent impedance frequency and temperature characteristics; moreover, the solid electrolyte showed 'self-healing' and non-polar behaviour.
机译:为了在电绝缘的介电层表面上形成电化学聚合的聚吡咯膜,首先以导电性为代价沉积了导电预涂层。使用预涂层作为阳极,然后电化学沉积聚吡咯层以制备用于制造固体电解电容器,其中将复合导电聚合物层用作固体电解质。可溶性聚苯胺以及通过化学氧化聚合形成的聚吡咯可以用作导电预涂层。使用复合固体电解质的电容器具有出色的阻抗频率和温度特性;此外,固体电解质表现出“自愈”和非极性的行为。

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