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Self-assembled quasi-hexagonal arrays of gold nanoparticles with small gaps for surface-enhanced Raman spectroscopy

机译:具有小间隙的金纳米粒子的自组装准六边形阵列用于表面增强拉曼光谱

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摘要

The fabrication and optical characterization of self-assembled arrangements of rough gold nanoparticles with a high area coverage and narrow gaps for surface-enhanced Raman spectroscopy (SERS) are reported. A combination of micellar nanolithography and electroless deposition (ED) enables the tuning of the spacing and size of the noble metal nanoparticles. Long-range ordered quasi-hexagonal arrays of gold nanoparticles on silicon substrates with a variation of the particle sizes from about 20 nm to 120 nm are demonstrated. By increasing the particle sizes for the homogeneously spaced particles, a large number of narrow gaps is created, which together with the rough surface of the particles induces a high density of intense hotspots. This makes the surfaces interesting for future applications in near-field-enhanced bio-analytics of molecules. SERS was demonstrated by measuring Raman spectra of 4-MBA on the gold nanoparticles. It was verified that a smaller inter-particle distance leads to an increased SERS signal.
机译:报道了具有高面积覆盖率和窄间隙的粗糙金纳米粒子自组装结构的制备和光学表征,以用于表面增强拉曼光谱(SERS)。胶束纳米光刻与化学沉积(ED)的结合可调节贵金属纳米颗粒的间距和大小。证实了金纳米颗粒在硅基底上的长距离有序准六边形阵列,其粒径在约20 nm至120 nm之间变化。通过增加均匀分布的颗粒的粒径,会产生大量的狭窄缝隙,这些缝隙与颗粒的粗糙表面共同导致高密度的密集热点。这使表面对于分子近场增强生物分析中的未来应用引起了兴趣。通过测量金纳米颗粒上4-MBA的拉曼光谱证明了SERS。证实较小的粒子间距离导致增加的SERS信号。

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