Department of Electrical and Computer Engineering, University of Minnesota, Minneapolis, Minnesota 55455, USA.
ACS Nano. 2012 Oct 23;6(10):9168-74. doi: 10.1021/nn303496g. Epub 2012 Sep 17.
With a template-stripping fabrication technique, we demonstrate the mass fabrication of high-quality, uniform, ultrasharp (10 nm) metallic probes suitable for single-molecule fluorescence imaging, tip-enhanced Raman spectroscopy (TERS), and other near-field imaging techniques. We achieve reproducible single-molecule imaging with sub-20-nm spatial resolution and an enhancement in the detected fluorescence signal of up to 200. Similar results are obtained for TERS imaging of carbon nanotubes. We show that the large apex angle (70.5°) of our pyramidal tip is well suited to scatter the near-field optical signal into the far-field, leading to larger emission enhancement and hence to a larger quantum yield. Each gold or silver pyramidal probe is used on-demand, one at a time, and the unused tips can be stored for extended times without degradation or contamination. The high yield (>95%), reproducibility, durability, and massively parallel fabrication (1.5 million identical probes over a wafer) of the probes hold promise for reliable optical sensing and detection and for cementing near-field optical imaging and spectroscopy as a routine characterization technique.
我们采用模板剥离制造技术,成功批量制备出高质量、均匀、超尖锐(10nm)的金属探针,适用于单分子荧光成像、针尖增强拉曼光谱(TERS)和其他近场成像技术。我们实现了具有亚 20nm 空间分辨率的可重复单分子成像,并且探测到的荧光信号增强高达 200 倍。对于碳纳米管的 TERS 成像,也得到了类似的结果。我们表明,我们的金字塔形尖端具有较大的顶角(70.5°),非常适合将近场光学信号散射到远场,从而实现更大的发射增强,进而获得更大的量子产率。每个金或银金字塔形探针按需使用,一次一个,未使用的探针可以长时间储存而不会降解或污染。探针具有高产量(>95%)、可重复性、耐用性和大规模并行制造(在晶圆上制造 150 万个相同的探针)的特点,有望实现可靠的光学传感和检测,并将近场光学成像和光谱学作为一种常规表征技术固定下来。