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SERS Response from Gold Nanorods and Dumbbells

机译:来自金纳米德和哑铃的Sers回应

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摘要

It is now believed that the on-resonance excitation of the plasmonic nanoparticle is necessary to increase the Raman signal intensity of nearby molecules. On this basis, researchers try to fabricate rationally designed nanoparticles for surface-enhanced Raman scattering (SERS) applications with plasmon resonance close to wavelength of excitation. However, existing experiments show inconsistent results of measuring the dependence of the enhancement factor as a function of nanopaticle plasmon resonance. To fill the gap, we use the method of controllable etching to prepare set of Au nanorod colloids with the equal concentration, nanorod width, shape and tunable plasmon resonance that incrementally spanned 650-920 nm. Nanorods were functionalized with 4-nitrobenzenethiol and surface-enhanced Raman spectra were measured in colloid under 785 nm laser excitation. As a result we observe weak correlation between nanorod plasmon peak and SERS response. The ratio of SERS signals for on-resonance and of-resonance excitation was below 2. Nanorods were further overgrowth to have dumbbell morphology. This transformation leads to strong increase in SERS enhancement factor. Thus tuning of nanoparticles shape is more important factor towards highest SERS response compared to nanoparticle plasmonic peak.
机译:现在认为等离子体纳米粒子的促进激发是必要的,以增加附近分子的拉曼信号强度。在此基础上,研究人员试图制造合理设计的纳米粒子用于表面增强的拉曼散射(SERS)应用,其具有靠近激发波长的等离子体共振。然而,现有实验表明,测量增强因子的依赖性的依赖性的不一致结果是纳米舱等离子体共振的函数。为了填充间隙,我们使用可控蚀刻的方法来制备具有相同浓度,纳米棒宽度,形状和可调谐等离子体共振的Au纳米棒胶体的一套,逐步跨越650-920nm。用4-硝基苯硫醇和表面增强的拉曼光谱官能化纳米棒在785nm激光激发下测量表面增强的拉曼光谱。结果,我们观察纳米棒等离子体峰值和SERS反应之间的弱相关性。 SERs信号的阶段信号与共振和共振激发的比率低于2.纳米棒进一步过度生长以具有哑铃形态。该转变导致SERS增强因子的强劲增长。因此,与纳米颗粒峰值峰相比,纳米颗粒形状的调谐是最高菌率响应的重要因素。

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