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SURFACE MODIFICATION OF CARBON BLACK BY ANODIC OXIDATION AND ELECTROCHEMICAL CHARACTERIZATION

机译:阳极氧化和电化学表征对炭黑的表面改性

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The purpose of the work reported here is to give carbon black with a high functional surface, especially for use in battery electrodes. The authors have investigated the surface properties, such as wettability, electric conductivity, and rate constant of H2O2 decomposition of surface modified carbon black (CB) by anodic oxidation processing. This work also describes the relationships between the surface properties and the electrochemical behavior of the electrodes with anodically modified CB in an aqueous KOH solution. The results are as follows: the CB surface changes from hydrophobic to hydrophilic; the conductivity of CB decreases with the processing; and the processing enhances the H2O2 decomposition ability of CB. From experiments using a rotating disk electrode, it can be concluded that oxygen electrode reaction on CB surface is a two-electron reduction forming H2O2 as an intermediate. The polarization behavior of an oxygen electrode with CB has been much improved by the anodic oxidation. This can be attributed to the formation of the stable three-phase zone owing to adequate wettability, high H2O2 decomposition ability, and highly developed fine pores of the CB electrode. [References: 16]
机译:此处报道的工作目的是提供具有高功能表面的炭黑,尤其是用于电池电极的炭黑。作者研究了表面性质,如润湿性,电导率和表面改性炭黑(CB)通过阳极氧化处理时H2O2分解的速率常数。这项工作还描述了在KOH水溶液中具有阳极改性CB的电极的表面性能与电化学行为之间的关系。结果如下:CB表面从疏水性变为亲水性; CB的电导率随加工而降低;该处理增强了CB的H 2 O 2分解能力。从使用旋转圆盘电极的实验可以得出结论,CB表面上的氧电极反应是两电子还原,形成了H2O2作为中间体。阳极氧化大大改善了含CB的氧电极的极化行为。这归因于由于足够的润湿性,高的H2O2分解能力和高度发达的CB电极细孔而形成的稳定的三相区域。 [参考:16]

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