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Effects of direct and pulse current on electrodeposition of manganese dioxide

机译:直流和脉冲电流对二氧化锰电沉积的影响

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The physical and chemical properties of electrolytic manganese dioxide (EMD) are determined predominantly by the conditions employed during the anodic deposition process. There are relationships between deposition parameters, EMD properties and battery performance, as reported in many investigations. This study describes the influence of pulse current and direct current on the electrochemical properties of EMD. The EMD produced at different current conditions is characterized by charge-discharge cycling of various samples in the cathodic mixture of rechargeable alkaline AA cells, whereby the anode composition and the other cell parameters are kept constant. Results have shown that there is a systematic correlation between the pulse parameters and the cycle performance of EMD. The charge-discharge characteristics of test cells indicate an improvement in cycle performance of EMD with increasing duty cycle (i.e. with the approach of pulse current to direct current).
机译:电解二氧化锰(EMD)的物理和化学性质主要取决于阳极沉积过程中所采用的条件。如许多研究中所报道的,沉积参数,EMD特性和电池性能之间存在关系。这项研究描述了脉冲电流和直流电对EMD电化学性能的影响。在不同电流条件下产生的EMD的特征在于可充电碱性AA电池的阴极混合物中各种样品的充放电循环,从而使阳极组成和其他电池参数保持恒定。结果表明,脉冲参数与EMD的循环性能之间存在系统的相关性。测试单元的充电-放电特性表明EMD的循环性能随占空比的增加而提高(即脉冲电流接近直流电)。

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