Istituto Italiano di Tecnologia, Via Morego 30, 16163 Genova, Italy.
Nanoscale. 2018 Sep 20;10(36):17362-17369. doi: 10.1039/c8nr04103b.
We fabricate a plasmonic nanoslot that is capable of performing enhanced single molecule detection at 10 μM concentrations. The nanoslot combines the tiny detection volume of a zero-mode waveguide and the field enhancement of a plasmonic nanohole. The nanoslot is fabricated on a bi-metallic film formed by the sequential deposition of gold and aluminum on a transparent substrate. Simulations of the structure yield an average near-field intensity enhancement of two orders of magnitude at its resonant frequency. Experimentally, we measure the fluorescence stemming from the nanoslot and compare it with that of a standard aluminum zero-mode waveguide. We also compare the detection volume for both structures. We observe that while both structures have a similar detection volume, the nanoslot yields a 25-fold fluorescence enhancement.
我们制作了一个等离子体纳米缝隙,能够在 10μM 浓度下进行增强的单分子检测。纳米缝隙结合了零模波导的微小检测体积和等离子体纳米孔的场增强。纳米缝隙是在透明衬底上顺序沉积金和铝形成的双金属膜上制作的。结构的模拟在其共振频率下产生平均近场强度增强两个数量级。在实验中,我们测量了源自纳米缝隙的荧光,并将其与标准的铝零模波导的荧光进行比较。我们还比较了这两种结构的检测体积。我们观察到,虽然这两种结构具有相似的检测体积,但纳米缝隙的荧光增强了 25 倍。