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交流扫描电化学显微镜和原子力显微镜-交流扫描电化学显微镜成像中电化学活性对比度的频率依赖性。

Frequency dependence of the electrochemical activity contrast in AC-scanning electrochemical microscopy and atomic force microscopy-AC-scanning electrochemical microscopy imaging.

作者信息

Eckhard Kathrin, Kranz Christine, Shin Heungjoo, Mizaikoff Boris, Schuhmann Wolfgang

机构信息

Analytische Chemie-Elektroanalytik und Sensorik, Ruhr-Universität Bochum, D-44780 Bochum, Germany.

出版信息

Anal Chem. 2007 Jul 15;79(14):5435-8. doi: 10.1021/ac070605e. Epub 2007 Jun 14.

Abstract

Alternating current mode scanning electrochemical microscopy (AC-SECM) enables local detection of electrochemical surface activity without any redox mediator present in solution. Z-approach curves toward the substrate result in a negative feedback curve of the ac signal for insulating samples. On conducting samples, however, the shape of the feedback curve was found to be dependent on the ac perturbation frequency. Approach curves over a wide range of frequencies were performed, and the results were applied to interpret laterally resolved frequency-dependent measurements obtained with combined atomic force microscopy-AC-SECM (AFM-AC-SECM). For the first time, this frequency dependence of the signal was utilized to fine-tune the electrochemical contrast in lateral imaging in AC-SECM. An array of gold microelectrodes embedded in silicon nitride displaying significant changes in electrochemical activity as well as in topography was investigated using a bifunctional AFM-SECM tip with an integrated recessed ring microelectrode. Due to the unique geometrical conditions the electrochemical contrast between the conducting gold spots and the insulating SixNy is reversed, crosses zero, and inverts as a function of the applied ac frequency.

摘要

交变电流模式扫描电化学显微镜(AC-SECM)能够在溶液中不存在任何氧化还原介质的情况下对电化学表面活性进行局部检测。朝向基底的Z轴逼近曲线会导致绝缘样品的交流信号出现负反馈曲线。然而,对于导电样品,发现反馈曲线的形状取决于交流扰动频率。进行了在很宽频率范围内的逼近曲线测量,并将结果用于解释通过结合原子力显微镜-AC-SECM(AFM-AC-SECM)获得的横向分辨频率相关测量结果。首次利用信号的这种频率依赖性在AC-SECM的横向成像中微调电化学对比度。使用带有集成凹陷环形微电极的双功能AFM-SECM探针研究了嵌入氮化硅中的金微电极阵列,该阵列在电化学活性以及形貌方面显示出显著变化。由于独特的几何条件,导电金点与绝缘SiₓNᵧ之间的电化学对比度会反转、过零并随所施加的交流频率而变化。

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