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首页> 外文期刊>Journal of Electrochemical Energy Conversion and Storage >Multilayer Nickel-Copper Anode for Direct Glucose Fuel Cell
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Multilayer Nickel-Copper Anode for Direct Glucose Fuel Cell

机译:用于直接葡萄糖燃料电池的多层镍铜阳极

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摘要

Multilayer nickel-copper coatings consisting of layers of nickel-copper alloy and a mixture of metals with hydroxides were obtained by electrodeposition from polyligand pyrophosphate-ammonia electrolyte by the two-pulse potentiostatic method. A comparison between two different electrodes with the same real surface area is presented. The equality of the surface area of electrodes deposited from the electrolyte containing different copper and nickel ions' concentration ratio was achieved by deposition of different numbers of layers. It is shown that the increase in the copper content in electrolyte leads to an increase in the copper ions' content in the coating and the electrode surface develops more intensively. Freshly deposited coatings have approximately the same catalytic activity in the glucose oxidation reaction in the alkaline solution. But a multilayer coating with a higher copper content is more corrosion resistant and more stable in long-term electrolysis.
机译:通过双脉冲稳定性方法从培体焦磷酸氨基电解质电沉积获得由镍 - 铜合金层和金属混合物组成的多层镍 - 铜涂层。 提出了两个不同电极之间的比较,具有相同的真实表面积。 通过沉积不同数量的层,通过沉积沉积来自含有不同铜的电解质和镍离子浓度比的电极表面积的平等。 结果表明,电解质中的铜含量的增加导致涂层中铜离子含量的增加,电极表面更加强烈地发展。 新沉积的涂层在碱性溶液中具有大致相同的催化活性葡萄糖氧化反应。 但具有较高铜含量的多层涂层更耐腐蚀,长期电解更稳定。

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