INM-Leibniz Insitute for New Materials and Physics Department, Saarland University, Campus D2 2, 66123 Saarbrücken, Germany.
Forschungszentrum Jülich, Institute of Energy and Climate Research, IEK-9, 52425 Jülich, Germany and RWTH Aachen University, Institut für Physikalische Chemie, 52074 Aachen, Germany.
Faraday Discuss. 2017 Jul 1;199:299-309. doi: 10.1039/c6fd00237d. Epub 2017 Apr 21.
The confinement of liquids in nanometer-scale gaps can lead to changes in their viscous shear properties. For liquids of polar molecules, the charge state of the confining surfaces has a significant influence on the structure in the confined liquid. Here we report on the implementation of dynamic shear force microscopy in an electrochemical cell. Lateral oscillations of the tip of an atomic force microscope were magnetically activated at a frequency of about 50 kHz. The damping of the lateral tip oscillation was recorded as a function of the tip-sample distance and of the electrode potential at the surface of a Au(100) single crystal electrode. The influence of surface charges on the shear response of the nano-confined liquids was demonstrated for the ionic liquid [EMIM][NTf] and for aqueous NaSO solution.
液体在纳米级间隙中的限制会导致其粘性剪切性能发生变化。对于具有极性分子的液体,限制表面的电荷状态对受限液体中的结构有重大影响。在这里,我们报告了在电化学电池中实施动态剪切力显微镜的情况。原子力显微镜的尖端以约 50 kHz 的频率通过磁场进行横向振动。记录了横向尖端振动的阻尼作为尖端-样品距离和 Au(100)单晶电极表面的电极电势的函数。对于离子液体[EMIM][NTf]和水合 NaSO 溶液,证明了表面电荷对纳米受限液体的剪切响应的影响。