首页> 外文会议>Conference of the Yugoslav Materials Research Society >Electrochemical Study of Hydrogen Electrode Reaction Kinetics on LmNi_(3.55)Co_(0.75)Mn_(0.4)Al_(0.3) Alloy Electrode
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Electrochemical Study of Hydrogen Electrode Reaction Kinetics on LmNi_(3.55)Co_(0.75)Mn_(0.4)Al_(0.3) Alloy Electrode

机译:LMNI_(3.55)CO_(0.75)MN_(0.4)AL_(0.3)合金电极上的氢电极反应动力学的电化学研究

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摘要

The exchange current density and the peak current density of the hydrogen electrode reaction on LmNi_(3.55)Co_(0.75)Mn_(0.4)Al_(0.3) alloy electrode in an aqueous 1M KOH solution, at low hydrogen contents ( < 0.1 H/M) and elevated temperatures (42-60°C), were studied using potentiostatic polarization techniques. Both measured quantities increased linearly with the increase in hydrogen content in the alloy. On the basis of the difference between the activation energy of the charge transfer and the hydrogen diffusion, it was concluded that the charge transfer reaction represented the rate-determining step of the hydrogen electrode reaction under applied experimental conditions. The decrease of each of these two activation energies with increasing hydrogen content was evidenced, which indicated the existence of other processes occurring in the electrode bulk accompanying the hydrogen diffusion.
机译:在低氢气含量(<0.1h / m)中,在1M KOH溶液中的LMNI_(3.55)CO_(0.75)CO_(0.75)MN_(0.4)AL_(0.3)合金电极上的LMNI_(3.55)CO_(0.4)的峰值电流密度。使用电位辐射偏振技术研究了高温(42-60℃)的升高的温度。随着合金中的氢含量的增加,两种测量量随着氢含量的增加而增加。基于电荷转移和氢气扩散的激活能量之间的差异,得出结论,电荷转移反应表示应用实验条件下的氢电极反应的速率确定步骤。通过增加氢含量的这两个激活能量中的每一个的降低,这表明存在在伴随氢气的电极体中发生的其他过程。

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