Auer Andrea, Eder Bernhard, Giessibl Franz J
Institute of Experimental and Applied Physics, University of Regensburg, 93053 Regensburg, Germany.
J Chem Phys. 2023 Nov 7;159(17). doi: 10.1063/5.0168329.
Atomic force microscopy (AFM) that can be simultaneously performed with scanning tunneling microscopy (STM) using metallic tips attached to self-sensing quartz cantilevers (qPlus sensors) has advanced the field of surface science by allowing for unprecedented spatial resolution under ultrahigh vacuum conditions. Performing simultaneous AFM and STM with atomic resolution in an electrochemical cell offers new possibilities to locally image both the vertical layering of the interfacial water and the lateral structure of the electrochemical interfaces. Here, a combined AFM/STM instrument realized with a qPlus sensor and a home-built potentiostat for electrochemical applications is presented. We demonstrate its potential by simultaneously imaging graphite with atomic resolution in acidic electrolytes. Additionally, we show its capability to precisely measure the interfacial solvent layering along the surface normal as a function of the applied potential.
原子力显微镜(AFM)可使用附着在自感应石英悬臂梁(qPlus传感器)上的金属探针与扫描隧道显微镜(STM)同时进行,通过在超高真空条件下实现前所未有的空间分辨率,推动了表面科学领域的发展。在电化学池中以原子分辨率同时进行AFM和STM,为局部成像界面水的垂直分层和电化学界面的横向结构提供了新的可能性。在此,介绍了一种结合qPlus传感器和用于电化学应用的自制恒电位仪实现的AFM/STM组合仪器。我们通过在酸性电解质中以原子分辨率同时成像石墨来展示其潜力。此外,我们展示了其精确测量沿表面法线方向的界面溶剂分层作为外加电位函数的能力。