浸出岩制备超级电容器电极用氧化锰碳的物理和电学性质的影响

Asri Saleh
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引用次数: 0

摘要

锰岩分为氧化锰岩、硅酸盐岩和碳酸盐岩。研究了锰岩浸出合成氧化碳锰,以及锰岩浸出对作为超级电容器电极原料的氧化碳锰的物理电学性能的影响。当MnO2: Carbon的复合比例为0.25 g: 0.75时,产生的最高电容值为65.3µF。在电阻测试中,MnO2: Carbon 0.25 g: 0.75 g时获得的电阻值最低,电阻值为1.92 kw, MnO2: Carbon 0.75 g: 0.25 g时获得的电感值最高,为126.7 mhz。在电导率测试中,当MnO2:碳的复合比例为0.75 g: 0.25 g时,电导率在60.4µS cm-1时达到最大值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Effect of Physical and Electrical Properties on the Synthesis of Manganese Oxide Carbon from Leaching Rocks as Supercapacitor Electrodes
Manganese rocks are classified into manganese oxide, silicate, and carbonate. The research was carried out to synthesize carbon manganese oxide from the leaching of manganese rock and how to influence the physical and electrical properties of carbon manganese oxide from the leaching of manganese rock as the primary material for supercapacitor electrodes. The highest capacitance value produced was 65.3 µF in the composite ratio MnO2 : Carbon 0.25 g : 0.75. In the resistance test, the lowest resistance value was obtained in comparing the composite MnO2 : Carbon 0.25 g : 0.75 g with a resistance value of 1.92 kW.The highest inductance value obtained was 126.7mHon the composite ratio MnO2 : Carbon 0.75 g : 0.25 g. In the conductivity test, the highest value was obtained at 60.4 µS cm-1 in the composite ratio MnO2 : carbon 0.75 g : 0.25 g.
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