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Touching Surface-Attached Molecules with a Microelectrode: Mapping the Distribution of Redox-Labeled Macromolecules by Electrochemical-Atomic Force Microscopy

机译:用微电极接触表面附着的分子:通过电化学原子力显微镜绘制氧化还原标记的大分子的分布图

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We report on the development of a mediator-free electrochemical-atomic force microscopy (AFM-SECM) technique designed for high-resolution imaging of molecular layers of nanometer-sized redox-labeled (macro)molecules immobilized onto electrode surfaces. This new AFM-SECM imaging technique, we call molecule touching atomic force electrochemical microscopy (Mt/AFM-SECM), is based on the direct contact between surface-anchored molecules and an incoming microelectrode (tip). To validate the working-principle of this microscopy, we consider a model system consisting of a monolayer of nanometer long, flexible, polyethylene glycol (PEG) chains covalently attached by one extremity to a gold surface and bearing at their free end a ferrocene (Fc) redox tag. Using Mt/AFM-SECM in tapping mode, i.e., by oscillating the tip so that it comes in intermittent contact with the grafted chains, we show that the substrate topography and the distribution of the redox-tagged PEG chains immobilized on the gold surface can be simultaneously and independently imaged at the sub-100 nm scale. This novel type of SECM imaging may be found useful for characterizing the surface of advanced biosensors which use electrode-grafted, redox-tagged, linear biochains, such as peptides or DNA chains, as sensing elements. In principle, Mt/ AFM-SECM should also permit in situ imaging of the distribution of any kind of macromolecules immobilized on electrode surfaces or simply conducting surfaces, provided they are labeled by a suitable redox tag.
机译:我们报告了无介体的电化学原子力显微镜(AFM-SECM)技术的发展,该技术旨在对固定在电极表面的纳米级氧化还原标记的(宏)分子的分子层进行高分辨率成像。这种新的AFM-SECM成像技术,我们称为分子接触原子力电化学显微镜(Mt / AFM-SECM),基于表面锚定的分子与传入的微电极(尖端)之间的直接接触。为了验证该显微镜的工作原理,我们考虑一个模型系统,该模型系统由一层纳米长的柔性聚乙二醇(PEG)链单层组成,该链通过一个末端与金表面共价连接,并在其自由端带有二茂铁(Fc )氧化还原标记。在攻丝模式下使用Mt / AFM-SECM,即通过振荡尖端以使其与接枝链间歇接触,我们证明了固定在金表面上的底物形貌和氧化还原标记PEG链的分布可以在100 nm以下的水平上同时独立成像。可以发现这种新型的SECM成像可用于表征高级生物传感器的表面,该传感器使用电极接枝,氧化还原标记的线性生物链(例如肽或DNA链)作为传感元件。原则上,Mt / AFM-SECM还应允许对固定在电极表面或简单导电表面上的任何种类大分子的分布进行原位成像,前提是它们被适当的氧化还原标签标记。

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