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Sensitive surface-enhanced Raman scattering substrates based on anti-pyramidal gold architectures decorated with silver nanoparticles

机译:基于抗金字塔金架构的敏感表面增强拉曼散射基板,用银纳米粒子装饰

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摘要

A micro-structured gold surface, consisting of a periodic square-based anti-pyramidal array (Klarite) with a smooth boundary surface on which silver nanoparticles (diameter: 60nm) were deposited, produced an active surface enhanced Raman scattering substrate. With p-aminothiophenol as a probe molecule, the Raman activity of the micro-structured surface was compared before and after deposition of the silver nanoparticles. Experimental results show that the Raman spectra on the silver/p-aminothiophenol/Klarite structure is stronger than that on the silver/p-aminothiophenol/gold film and the Raman spectra on the silver/p-aminothiophenol/gold film is stronger than that on silver/p-aminothiophenol, p-aminothiophenol/Klarite structure, p-aminothiophenol/gold film, which is confirmed by numerical simulations. A similar result is obtained with crystal violet as test molecule.
机译:微结构化的金表面,由周期性正方形的抗金字塔阵列(Klarite)组成,具有光滑的边界表面,其中沉积银纳米粒子(直径:60nm),制成有源表面增强拉曼散射基材。 用p-氨基噻吩醇作为探针分子,在沉积银纳米粒子之前和之后比较微结构表面的拉曼活性。 实验结果表明,银/氨基酚酚/克拉石结构上的拉曼光谱比银/氨基酚酚/金膜上的拉曼光谱更强,银/氨基酚酚/金膜上的拉曼光谱比这更强 银/对氨基酚,P-氨基酚酚/克拉石结构,P-氨噻吩酚/金膜,通过数值模拟确认。 用晶体紫作为测试分子获得类似的结果。

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