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通过 18O 示踪剂掺入法在 YSZ 上对 Pt 电极的氧还原位点进行可视化:电化学活性区的宽度。

Visualization of oxygen reduction sites at Pt electrodes on YSZ by means of 18O tracer incorporation: the width of the electrochemically active zone.

机构信息

Vienna University of Technology, Institute of Chemical Technologies and Analytics, Getreidemarkt 9/E-164, 1060 Vienna, Austria.

出版信息

Phys Chem Chem Phys. 2010 Oct 21;12(39):12734-45. doi: 10.1039/c0cp00309c. Epub 2010 Aug 25.

Abstract

In this study the electrochemically active region of oxygen incorporation into yttria stabilized zirconia (YSZ) was visualized by means of (18)O tracer incorporation experiments on dense Pt thin film microelectrodes combined with ToF-SIMS analysis. The localization and the shape of the incorporation zone were found to strongly depend on the polarization of the electrode. In case of lower overpotentials the active zone next to the three phase boundary (TPB) was frame-shaped and located beneath the Pt electrode. Increases in polarization led to an extension of the incorporation zone along the free YSZ surface. Owing to the low temperature of 300-330 °C a profile-broadening caused by diffusion in YSZ could be minimized and quantitatively separated from the measured profiles. The TPB-width (i.e. the decay length of electrochemical activity) was determined to be approximately 1.0-1.3 μm at these temperatures.

摘要

在这项研究中,通过在致密 Pt 薄膜微电极上进行(18)O 示踪掺入实验,并结合 ToF-SIMS 分析,可视化了氧掺入钇稳定氧化锆(YSZ)的电化学活性区域。发现掺入区域的位置和形状强烈依赖于电极的极化。在较低过电势的情况下,三相边界(TPB)附近的活性区域呈框架状,位于 Pt 电极下方。随着极化的增加,掺入区域沿着自由 YSZ 表面延伸。由于温度低至 300-330°C,在 YSZ 中的扩散引起的轮廓展宽可以最小化,并从测量的轮廓中定量分离出来。在这些温度下,确定 TPB 宽度(即电化学活性的衰减长度)约为 1.0-1.3μm。

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