Advanced Nano Characterization Center, National Institute for Materials Science, Tsukuba, Ibaraki, Japan.
Nanotechnology. 2010 Jan 29;21(4):045204. doi: 10.1088/0957-4484/21/4/045204. Epub 2009 Dec 10.
We have fabricated an Au/ITO (indium-tin-oxide) dual-layer optical fiber probe with functions for high-quality scanning tunneling microscope (STM) imaging and near-field excitation and detection of STM-induced electroluminescence (STML). The inner ITO layer is kept approximately 150 nm in thickness to ensure the conductivity of the fiber probe. The outer Au layer is kept approximately 13 nm in thickness to obtain a better combination of high electron injection efficiency and optical transparency. High-quality STM images, and STML corresponding to maximum quantum efficiencies of 7 x 10(-4) and 1 x 10(-4) photons/electron are obtained on Au(111)/mica and p-GaAs(110) surfaces at room temperature (RT), respectively. The outer Au layer on the Au/ITO-coated fiber probe shows an effective role in improving the quality of STM imaging, the tip apex geometry and durability of the fiber probe, the stability and reproducibility of STML and enhancing the intensity of plasmon-mediated STML from the Au(111) surface but it shows no effect in enhancing the intensity of STML from the GaAs(110) surface.
我们制作了一种具有高质量扫描隧道显微镜 (STM) 成像功能以及用于近场激发和检测 STM 诱导电致发光 (STML) 的金/氧化铟锡 (ITO) 双层光纤探针。内层 ITO 的厚度保持在约 150nm,以确保光纤探针的导电性。外层 Au 的厚度保持在约 13nm,以获得更高的电子注入效率和光学透明度的更好组合。在室温下,我们分别在 Au(111)/云母和 p-GaAs(110)表面上获得了高质量的 STM 图像和对应于最大量子效率为 7×10(-4)和 1×10(-4)光子/电子的 STML。Au/ITO 涂层光纤探针上的外层 Au 层在提高 STM 成像质量、探针尖端几何形状和耐久性、STML 的稳定性和重现性以及增强来自 Au(111)表面的等离子体介导 STML 的强度方面发挥了有效作用,但对增强来自 GaAs(110)表面的 STML 强度没有影响。