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Characterization of surface enhanced Raman scattering (SERS) substrates fabricated from colloidal printing inks

机译:表面增强拉曼散射(SERS)基材的表征胶体印刷油墨

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Surface enhanced Raman scattering (SERS) is now a well-established technique to greatly amplify the normally weak Raman scattering signals. The amplification is achieved by using SERS substrates — specially structured metallic substrates with nano-scale morphological features. One of the most widely used methods for SERS amplification employs nanoparticles of silver or gold either in colloidal suspension or in dry-drop form. In such substrates SERS amplification factors (AF) exceeding 10~(12) have been reported. The reproducibility of the colloid-based substrates, however, is a problem. The lack of reproducibility can be caused by a variety of factors that can change the interparticle distances. In this paper we show that thermal annealing of SERS substrates fabricated using commercially available nano-particle inks can be used to create thermally stable substrates with high reproducibility. It appears that thermal annealing destroys the unstable hot-spots with very high AF's but still leaves the sample with high AF sites yielding spatially averaged substrate AF's exceeding 10~8.
机译:表面增强拉曼散射(SERS)现在是一种良好的技术,可以大大放大常弱的拉曼散射信号。通过使用SERS基材 - 具有纳米级形态特征的特殊结构化金属衬底来实现扩增。 SERS扩增的最广泛使用的方法之一使用胶体悬浮液或干滴形式的纳米颗粒。在这种基板中,已经报道了超过10〜(12)的扩增因子(AF)。然而,基于胶体基的基材的再现性是一个问题。缺乏可重复性可能是由可以改变颗粒间距的各种因素引起的。在本文中,我们表明,使用市售纳米粒子油墨制造的SERS基材的热退火可用于产生具有高再现性的热稳定基材。似乎热退火摧毁了具有非常高的自动对焦的不稳定热点,但仍然将样品留下具有高AF场的样品,从而产生空间平均基板AF超过10〜8。

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