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1)  noble polarization curve
电化学阳极极化
2)  Anodic electrochemistry
阳极电化学
3)  electrochemical anodic oxidation
电化学阳极氧化
1.
High-density,well-ordered and uniform titanium oxide nanotube arrays were prepared by electrochemical anodic oxidation.
采用电化学阳极氧化法在钛基体上制得了高度致密的、有序的、均匀的TiO2纳米管阵列。
2.
The Pt-TiO_2 nanotubes electrode consisting of Pt nanoparticles dispersed over a nanotubular TiO_2 was prepared using the method of electrochemical anodic oxidation followed by cathodic reduction.
采用电化学阳极氧化-阴极还原法制备Pt-TiO2纳米管电极。
4)  anodic polarization
阳极极化
1.
Effect of sulfate ions on anodic polarization behavior of nanocrystalline copper bulk
SO_4~(2-)对块体纳米晶铜阳极极化行为的影响
2.
Kinetic analysis on anodic polarization behavior of nanocrystalline copper in Na_2SO_4 solution
纳米晶铜在Na_2SO_4溶液中阳极极化动力学分析
3.
The electrochemical behavior of AZ31 Mg alloy was investigated by measuring anodic polarization curves and electrochemical impedance spectroscopy(EIS).
采用阳极极化和电化学阻抗谱(EIS)技术研究了AZ31镁合金的电化学腐蚀行为。
5)  anode polarization
阳极极化
1.
The corrosion behaviors of Ni-P/Si_(3)N_(4) composite deposit in acetic acid(w=20%) were studied by anode polarization curves,alternating current impedance and corrosion weight-loss test.
通过阳极极化曲线、交流阻抗谱和腐蚀失重实验研究了化学镀N i-P/S i3N4复合镀层在20%醋酸溶液中的腐蚀行为,并用SEM观察腐蚀前后镀层的形貌。
2.
With the X ray diffraction of these coatings contained different percentage of nickel, anode polarization action of the coatings during polarizing are analyzed.
对锌镍合金钝化及未钝化镀层在5%盐水及矿井水中的阳极极化曲线进行了测试,结合不同镍含量镀层的相结构衍射结果,分析了各镀层在极化过程中的阳极极化行为,讨论了锌镍合金耐腐蚀性优于纯锌镀层的原因。
3.
The results shows the capacity of the anode oxidation membrane decreases with the increasing of oxidation potential,and there exists relationship between impedance and behavior anode polarization.
提出了钽的氧化反应式及反应控制步骤 ;得出其氧化膜电容量随着氧化电位的增加而减少 ,阻抗与阳极极化行为存在相关关系。
6)  Anodic polarization current
阳极极化电流
1.
In this paper,the effect of the temperature,the anodic polarization current and the oxygenic pressure on the electricity of the high purity Zinc reference electrode in the hole-fluid of the soil was investigated by the electrochemistry rescearch methods such as polarization cure.
本文采用极化曲线等电化学方法研究了高纯锌在模拟土壤孔隙液中,温度、阳极极化电流、氧分压对锌电极电位的影响,以及XRD和失重法验证模拟土壤孔隙液试验的可行性。
补充资料:电化学极化
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性质:又称活化极化(activation polarization)。由电化学步骤控制电极反应过程速度的极化。电化学步骤的缓慢是因为阳极反应或阴极反应所需的活化能较高造成的,所以电极电位必须向正移或向负移,才能使阳极反应或阴极反应以一定速度进行。整个电极反应过程的速度由电化学极化所控制(称为电化学控制或活化控制)。电化学步骤最基本的动力学特征是电极电位与对应于电极反应速度的电流密度的对数间存在着线性关系。

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