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Electrochemical properties of nanodiamond powder electrodes

机译:纳米金刚石粉末电极的电化学性能

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Detonation-synthesized nanocrystalline diamond is a novel carbon material. Its increased electrical conductivity, due to the features of giant specific surface area and large numbers of surface defects as well as the cluster structure, makes it possible to be used as an electrode material. Nanodiamond powder electrodes were fabricated and the electrochemistry was investigated by cyclic voltammetry and AC impedance measurement. The results show that nanodiamond powder electrode is electrochemically stable in KCl electrolytes over a wide potential range (-1.2-2.0 V). The electrode reaction is quasi-reversible in 0.1 M KC1 containing the ferricyanide-ferrocyanide redox couple. The electrode reaction rate constant k is estimated to be 2.87 X 10~(-3) cm/s. The peak current increases linearly with the rising of the concentration of [Fe(CN)_6]~(3-/4-) . The AC impedance spectra have been analyzed and an equivalent circuit proposed.
机译:爆轰合成的纳米晶金刚石是一种新型的碳材料。由于具有大的比表面积和大量的表面缺陷以及簇结构的特征,其增加的电导率使得可以用作电极材料。制备了纳米金刚石粉末电极,并通过循环伏安法和交流阻抗测量研究了电化学。结果表明,纳米金刚石粉末电极在宽电位范围(-1.2-2.0 V)的KCl电解质中具有电化学稳定性。电极反应在含有铁氰化物-亚铁氰化物氧化还原对的0.1 M KCl中是可逆的。电极反应速率常数k估计为2.87×10〜(-3)cm / s。峰值电流随着[Fe(CN)_6]〜(3- / 4-)浓度的增加线性增加。已经分析了交流阻抗谱并提出了等效电路。

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