• 利用失重法动电位扫描电化学交流阻抗法对配咪唑啉类缓蚀剂lan耐蚀性能进行了研究。

    Thus the inhibition behavior of composite imidazoline inhibitor LAN was studied by means of weight-loss, potentiodynamic polarization curve, and electrochemical impedance spectroscopy (EIS).

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  • 循环伏安法电化学交流阻抗技术,上述组装膜进行了表征,初步研究这些自组装膜结构

    The electrochemical cyclic voltammetry and electrochemical impendence spectra were employed to characterize the structures and the properties of the above mentioned SAMs on gold.

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  • 采用线性电位扫描电化学交流阻抗电化学测量技术高深宽掩膜条件下微电铸电极反应动力学过程进行初步研究。

    The kinetics of the electrode reaction is preliminarily studied by linear potential sweep technique and electrochemical impedance while electrodepositing Ni for high aspect ratio structures.

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  • 采用电化学交流阻抗极化曲线研究了环境友好缓蚀剂酸盐及其配对模拟水中碳钢缓蚀作用

    The inhibition effect of environmental friendly inhibitors such as tungstate and its complex for carbon-steel corrosion in simulated water is studied by using AC impedance and polarization curves.

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  • 通过交流阻抗技术计时电流法表征了电极表面电化学性质

    The ac impedance technology and chronoamperometry were employed to study the electrochemical Characteristic of the membrane.

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  • 采用电化学动电位扫描交流阻抗研究了模拟斯德哥尔摩雨水中的腐蚀行为

    Corrosion behavior of copper in a simulated rainwater of Stockholm area was studied by electrochemical impedance spectrum and polarization curves.

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  • 应用线性极化法交流阻抗时间电位电化学方法普通混凝土掺粉煤灰混凝土钢筋海水侵蚀性能进行了研究

    Based on the method of linear polarization, AC impedance and time potential, it is studied that the properties of seawater corrosion resistance of rebar in normal concrete and fly ash concrete.

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  • 交流阻抗方法结果电化学的结果相一致

    The results from photoelectroche mical technique are in agreement with those from AC impedance technique.

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  • 采用电化学、光电化学交流阻抗方法研究了钝化形成过程电子性质影响

    Pure iron membranes were pre-charged with hydrogen at various current densities. Effect of hydrogen on the film formation process on iron was studied by electrochemical methods.

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  • 采用电化学、光电化学交流阻抗方法研究了钝化形成过程电子性质影响

    Pure iron membranes were pre-charged with hydrogen at various current densities. Effect of hydrogen on the film formation process on iron was studied by electrochemical methods.

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