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Electronic barriers in the iron oxide film govern its passivity and redox behavior: Effect of electrode potential and solution pH

机译:氧化铁膜中的电子势垒控制其钝化和氧化还原行为:电极电势和溶液pH的影响

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We have measured in situ the electronic conductance spectra of the passive film formed on an Fe electrode immersed in a borate buffer solution using electrochemical tunneling spectroscopy (ECTS) and electrochemical impedance spectroscopy (EIS) techniques, and we have followed their changes as the electrode is electrochemically oxidized and reduced. We demonstrate that pre-passive Fe(II) oxide and the passive Fe(II)/Fe(III) film, behave as p- and n-type semiconductors, respectively and that their reversible inter-conversion is mediated by the availability of free charge carriers on the electrode surface. ECTS spectra have been also modeled to obtain the main electrochemical kinetic parameters of the electron transfer through both p-Fe(II) and n-Fe(III) oxides at different sample potentials and pHs values. We find that the electronic energy barrier in the oxide and its dependence with electrode potential and solution pH, determine the reactivity and passivity of iron. (c) 2006 Elsevier B.V. All rights reserved.
机译:我们使用电化学隧道光谱(ECTS)和电化学阻抗谱(EIS)技术原位测量了浸入硼酸盐缓冲溶液中的Fe电极上形成的无源膜的电子电导谱,并且随着电极的变化,我们跟踪了它们的变化。电化学氧化和还原。我们证明预钝化的Fe(II)氧化物和钝化的Fe(II)/ Fe(III)膜分别表现为p型和n型半导体,并且它们的可逆相互转化是由游离态的可用性介导的电极表面上的电荷载流子。还对ECTS光谱进行了建模,以获得在不同的样品电势和pH值下通过p-Fe(II)和n-Fe(III)氧化物的电子转移的主要电化学动力学参数。我们发现,氧化物中的电子能垒及其对电极电势和溶液pH的依赖性决定了铁的反应性和钝化性。 (c)2006 Elsevier B.V.保留所有权利。

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