• Generally, the oxygen reduction and evolution is a two-electron chemical reaction.

    讨论还原氧析出时的电化学反应机理。

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  • The first part covers the structure of antenna and reaction centers, the mechanism of oxygen evolution, and the molecular mechanism of ATP synthesis.

    一部分包括天线反应中心结构、放机理ATP合成分子机理;

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  • These superior performances can be attributed to the higher reaction activity, lower electrochemical impedance and higher oxygen evolution potential for the nanostructured nickel hydroxide electrodes.

    添加纳米结构粉末的电极具有更高反应活性更小电化学反应阻抗,充电时氧气析出电位也比较,因而表现优良的电化学性能。

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  • The reaction current of oxygen evolution on lead was lower than that on lead-bismuth alloy at the same potentials in the anodic polarization curves.

    阳极极化曲线测量表明,相同电位,纯电极电流小于铅铋合金电极上的析氧电流;

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  • The reaction current of oxygen evolution on lead was lower than that on lead-bismuth alloy at the same potentials in the anodic polarization curves.

    阳极极化曲线测量表明,相同电位,纯电极电流小于铅铋合金电极上的析氧电流;

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