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Capacitive Characteristics of Binary Manganese-Nickel Oxides Prepared by Anodic Deposition

机译:阳极沉积法制备二元锰-镍氧化物的电容特性

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Because the rate of anodic deposition for manganese oxide is much larger than that for nickel oxide, the nickel content of binary Mn-Ni oxide can be increased by using a relatively positive potential region and a high Ni~(2+)/Mn~(2+) ratio (10/1) in the deposition solution. The capacitive characteristics of this binary oxide in a mixed electrolyte consisting of 0.1 M Na_2SO_4 with pH 10.1 adjusted by 0.01 M NaOH are much more ideal than that measured in 0.1 M Na_2SO_4. The effects of introducing Ni oxide into the MnO_x matrix on the capacitive performance are systematically investigated. The nanostructure of this Mn-Ni oxide deposit is demonstrated from the scanning electron microscopic morphology.
机译:因为锰氧化物的阳极沉积速率远大于镍氧化物的阳极沉积速率,所以可以通过使用相对正的电势区域和高Ni〜(2 +)/ Mn〜(沉积溶液中的2+)比(10/1)。该二元氧化物在由0.1 M Na_2SO_4和0.01 M NaOH调节的pH 10.1组成的混合电解质中的电容特性要理想得多。系统地研究了将氧化镍引入MnO_x基体对电容性能的影响。该Mn-Ni氧化物沉积物的纳米结构由扫描电子显微镜形态证实。

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