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In situ scanning electrochemical microscopy (SECM) detection of metal dissolution during zinc corrosion by means of mercury sphere-cap microelectrode tips

机译:汞球帽微电极头原位扫描电化学显微镜(SECM)检测锌腐蚀过程中的金属溶解

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摘要

This work presents a scanning electrochemical microscopy (SECM)-based in situ corrosion probing methodology that is capable of monitoring the release of zinc species in corrosion processes. It is based on the use of Hg-coated Pt microelectrodes as SECM tips, which offer a wider negative potential range than bare platinum or other noble-metal tips. This allows for the reduction of zinc ions at the tip to be investigated with low interference from hydrogen evolution and oxygen reduction from aqueous solutions. The processes involved in the corrosion of zinc during its immersion in chloride-containing solutions were successfully monitored by scanning the SECM tip, set at an adequate potential, across the sample either in one direction or in the X-Y plane parallel to its surface. In this way, it was possible to detect the anodic and cathodic sites at which the dissolution of zinc and the reduction of oxygen occurred, respectively. Additionally, cyclic voltammetry (CV) or constant potential measurements were used to monitor the release of zinc species collected at the tip during an SECM scan.
机译:这项工作提出了一种基于扫描电化学显微镜(SECM)的原位腐蚀探测方法,该方法能够监测腐蚀过程中锌物质的释放。它基于使用Hg涂层的Pt微电极作为SECM电极头,与裸铂或其他贵金属电极头相比,它提供了更大的负电势范围。这样就可以研究出尖端的锌离子的还原,而不受氢释放和水溶液中氧还原的干扰。通过在一个方向或平行于其表面的X-Y平面上扫描设置在适当电位下的SECM尖端,成功监测了锌在浸入含氯溶液中腐蚀过程所涉及的过程。以此方式,可以检测分别发生锌溶解和氧还原的阳极和阴极位置。此外,循环伏安法(CV)或恒定电势测量用于监视SECM扫描过程中在尖端收集的锌物质的释放。

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