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Simultaneous imaging of the topography and electrochemical activity of a 2D carbon nanotube network using a dual functional L-shaped nanoprobe

机译:使用双功能L形纳米探针对二维碳纳米管网络的形貌和电化学活性进行同时成像

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摘要

The application of nanomaterials for biosensors and fuel cells is becoming more common, but it requires an understanding of the relationship between the structure and electrochemical characteristics of the materials at the nanoscale. Herein, we report the development of scanning electrochemical microscopy-atomic force microscopy (SECM-AFM) nanoprobes for collecting spatially resolved data regarding the electrochemical activity of nanomaterials such as carbon nanotube (CNT) networks. The fabrication of the nanoprobe begins with the integration of a CNT-bundle wire into a conventional AFM probe followed by the deposition of an insulating layer and cutting of the probe end. In addition, a protrusive insulating tip is integrated at the end of the insulated CNT-bundle wire to maintain a constant distance between the nanoelectrode and the substrate; this yields an L-shaped nanoprobe. The resulting nanoprobes produced well-fitted maps of faradaic current data with less than 300 nm spatial resolution and topographical images of CNT networks owing to the small effective distance (of the order of tens of nanometers) between the electrode and the substrate. Electrochemical imaging using the L-shaped nanoprobe revealed that the electrochemical activity of the CNT network is not homogeneous and provided further understanding of the relationship between the topography and electrochemical characteristics of CNT networks
机译:纳米材料在生物传感器和燃料电池中的应用正变得越来越普遍,但它需要了解纳米级材料的结构与电化学特性之间的关系。在这里,我们报告扫描电化学显微镜-原子力显微镜(SECM-AFM)纳米探针的发展,该探针用于收集有关纳米材料(如碳纳米管(CNT)网络)的电化学活性的空间分辨数据。纳米探针的制造始于将CNT束线集成到常规AFM探针中,然后沉积绝缘层并切割探针末端。另外,在绝缘的CNT束线的末端集成了一个突出的绝缘尖端,以保持纳米电极和基板之间的距离恒定。这产生了一个L形的纳米探针。由于电极和基板之间的有效距离较小(数十纳米的数量级),所得纳米探针产生了具有小于300 nm空间分辨率的法拉第电流数据的拟合图和CNT网络的地形图。使用L形纳米探针的电化学成像显示CNT网络的电化学活性不均一,并进一步了解了CNT网络的形貌与电化学特性之间的关系

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