Whaley Josh A, McDaniel Anthony H, El Gabaly Farid, Farrow Roger L, Grass Michael E, Hussain Zahid, Liu Zhi, Linne Mark A, Bluhm Hendrik, McCarty Kevin F
Sandia National Laboratories, Livermore, California 94550, USA.
Rev Sci Instrum. 2010 Aug;81(8):086104. doi: 10.1063/1.3479384.
We describe a fixture that allows electrochemical devices to be studied under electrical bias in the type of vacuum systems commonly used in surface science. Three spring-loaded probes provide independent contacts for device operation and the characterization in vacuum or under in situ conditions with reactive gases. We document the robustness of the electrical contacts over large temperature changes and their reliability for conventional electrochemical measurements such as impedance spectroscopy. The optical access provided to the device enables the analysis by many techniques, as we demonstrate using x-ray photoelectron spectroscopy to measure local electrical potentials on a solid-oxide electrolyte device operating at high temperature in near-ambient pressure.
我们描述了一种装置,它能使电化学器件在表面科学中常用的真空系统类型下,在电偏压下进行研究。三个弹簧加载探针为器件操作以及在真空或与反应性气体的原位条件下的表征提供独立的接触。我们记录了电接触在大温度变化范围内的稳健性及其对常规电化学测量(如阻抗谱)的可靠性。提供给器件的光学通道使得能够通过多种技术进行分析,正如我们通过使用X射线光电子能谱来测量在近环境压力下高温运行的固体氧化物电解质器件上的局部电势所证明的那样。