干电池电极中的二氧化锰

K.-J. Euler
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引用次数: 3

摘要

介绍了二氧化锰作为电池电极活性成分的工作方式。只有30p.c.的电极体积被二氧化锰本身占据。大约50p.c.是孔隙体积,另外10p.c.由电子传导材料(例如炭黑)填充。剩余的10p.c.(按体积计)被固体盐占据。对多孔电极内部复杂的电过程进行了简要的处理。尽管进行了大量的理论和实验研究,但二氧化锰的放电反应仅在形式论或热力学近似中已知。到目前为止,只有应用类似的结论才能研究相之间界面的过程。尽管如此,毫无疑问,对二氧化锰电子导电性的了解和更深入的见解将对未来电池的发展产生很大影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Manganese dioxide in dry cell electrodes

The working mode of manganese dioxide as the active constituent of battery electrodes is described. Only 30 p.c. of the electrode volume is occupied by the manganese dioxide itself. About 50 p.c. are the pore volume, and another 10 p.c. are filled by the electron conducting material, e.g. carbon black. The remaining 10 p.c. by volume are occupied by solid salts. The complicated electric processes within the porous electrodes are treated concisely.

In spite of numerous theoretical and experimental investigations, the discharging reaction of manganese dioxide is known only in a formalistic or thermodynamic approximation. The processes in the interface between the phases can only be studied by the application of analogous conclusions, so far. Nevertheless, there is no doubt that the knowledge and deeper insight into the electronic conductivity of manganese dioxide will influence the future battery development very much.

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