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Out-diffused silver island films for surface-enhanced Raman scattering protected with TiO2 films using atomic layer deposition

机译:用原子层沉积法保护由TiO2薄膜保护的用于表面增强拉曼散射的未扩散银岛薄膜

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摘要

We fabricated self-assembled silver nanoisland films using a recently developed technique based on out-diffusion of silver from an ion-exchanged glass substrate in reducing atmosphere. We demonstrate that the position of the surface plasmon resonance of the films depends on the conditions of the film growth. The resonance can be gradually shifted up to 100 nm towards longer wavelengths by using atomic layer deposition of titania, from 3 to 100 nm in thickness, upon the film. Examination of the nanoisland films in surface-enhanced Raman spectrometry showed that, in spite of a drop of the surface-enhanced Raman spectroscopy (SERS) signal after the titania spacer deposition, the Raman signal can be observed with spacers up to 7 nm in thickness. Denser nanoisland films show slower decay of the SERS signal with the increase in spacer thickness.PACS78.67.Sc (nanoaggregates; nanocomposites); 81.16.Dn (self-assembly); 74.25.nd (Raman and optical spectroscopy)
机译:我们使用一种新近开发的技术制造了自组装的银纳米岛薄膜,该技术基于在还原气氛中银从离子交换玻璃基板中向外扩散。我们证明了膜的表面等离子体共振的位置取决于膜生长的条件。通过在膜上使用厚度从3到100 nm的二氧化钛原子层沉积,可以将共振朝着更长的波长逐渐转移到100 nm。在表面增强拉曼光谱中对纳米岛薄膜的检查表明,尽管二氧化钛间隔层沉积后表面增强拉曼光谱(SERS)信号有所下降,但在厚度高达7 nm的间隔层上仍可以观察到拉曼信号。随着间隔物厚度的增加,Denser纳米岛薄膜显示出SERS信号的衰减较慢。PACS78.67.Sc(纳米聚集体;纳米复合材料); 81.16.Dn(自组装); 74.25.nd(拉曼光谱和光谱学)

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