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无偏置电压反馈的调频开尔文探针力显微镜实现原子分辨率的表面电势成像。

Surface potential imaging with atomic resolution by frequency-modulation Kelvin probe force microscopy without bias voltage feedback.

作者信息

Kou Lili, Ma Zongmin, Li Yan Jun, Naitoh Yoshitaka, Komiyama Masaharu, Sugawara Yasuhiro

机构信息

Department of Applied Physics, Graduate School of Engineering, Osaka University, 2-1 Yamada-oka, Suita, Osaka 565-0871, Japan.

出版信息

Nanotechnology. 2015 May 15;26(19):195701. doi: 10.1088/0957-4484/26/19/195701. Epub 2015 Apr 21.

Abstract

We investigated the capability of obtaining atomic resolution surface potential images by frequency-modulation Kelvin probe force microscopy (FM-KPFM) without bias voltage feedback. We theoretically derived equations representing the relationship between the contact potential difference and the frequency shift (Δf) of an oscillating cantilever. For the first time, we obtained atomic resolution images and site-dependent spectroscopic curves for Δf and VLCPD on a Si (111)-7 × 7 surface. FM-KPFM without bias voltage feedback does not involve the influence of the FM-KPFM controller because it has no deviation from a parabolic dependence of Δf on the dc-bias voltage. It is particularly suitable for investigation on molecular electronics and organic photovoltaics, because electron or ion movement induced by dc bias is avoided and the electrochemical reactions are inhibited.

摘要

我们研究了通过无偏置电压反馈的调频开尔文探针力显微镜(FM-KPFM)获得原子分辨率表面电势图像的能力。我们从理论上推导了表示接触电势差与振荡悬臂梁频移(Δf)之间关系的方程。我们首次在Si(111)-7×7表面获得了原子分辨率图像以及Δf和垂直接触电势差(VLCPD)的位点相关光谱曲线。无偏置电压反馈的FM-KPFM不涉及FM-KPFM控制器的影响,因为它的Δf对直流偏置电压的依赖关系没有偏离抛物线。它特别适用于分子电子学和有机光伏领域的研究,因为避免了直流偏置引起的电子或离子移动,并且抑制了电化学反应。

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