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Control of apex shape of the fiber probe employed in photon scanning tunneling microscope by a multistep etching method

机译:通过多步蚀刻方法控制光子扫描隧道显微镜中使用的光纤探针的顶点形状

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摘要

In this paper, we discuss about the control of the shape of the very apex of a sharpened fiber probe used in photon scanning tunneling microscope (PSTM) by means of a method based on selective chemical etching. Under ambient conditions, through a multistep etching method proposed here, fiber probes with a flattened apex having a diameter of around 15-20 nm could be produced with high reproducibility. It has also been discovered that, during the etching process, the shape of the apex of the probe takes a rounded or a flattened shape with respect to the etching time in an almost cyclic fashion and such a phenomenon could help in understanding the mechanism of the etching process. These kind of probes with flat apex after metal coating are suitable for the fabrication of apertured probes used in PSTM and also for super tips which have a promising future as nanosensors in the fields of biology and biochemistry.
机译:在本文中,我们将讨论基于选择性化学刻蚀的方法对用于光子扫描隧道显微镜(PSTM)的尖锐纤维探针非常顶点的形状的控制。在环境条件下,通过此处提出的多步蚀刻方法,可以高重现性地生产出具有直径约15-20 nm的扁平顶点的光纤探针。还已经发现,在蚀刻过程中,探针的顶点的形状相对于蚀刻时间以近似循环的方式呈圆形或扁平状,并且这种现象可以帮助理解探针的机理。蚀刻工艺。这种金属涂层后具有平坦顶点的探针适合用于PSTM中的带孔探针的制造,也适合于在生物学和生物化学领域作为纳米传感器具有广阔前景的超级尖端。

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