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Controllable Charge Transfer in Ag-TiO2 Composite Structure for SERS Application

机译:用于SERS的Ag-TiO2复合结构中的可控电荷转移

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摘要

The nanocaps array of TiO2/Ag bilayer with different Ag thicknesses and co-sputtering TiO2-Ag monolayer with different TiO2 contents were fabricated on a two-dimensional colloidal array substrate for the investigation of Surface enhanced Raman scattering (SERS) properties. For the TiO2/Ag bilayer, when the Ag thickness increased, SERS intensity decreased. Meanwhile, a significant enhancement was observed when the sublayer Ag was 10 nm compared to the pure Ag monolayer, which was ascribed to the metal-semiconductor synergistic effect that electromagnetic mechanism (EM) provided by roughness surface and charge-transfer (CT) enhancement mechanism from TiO2-Ag composite components. In comparison to the TiO2/Ag bilayer, the co-sputtered TiO2-Ag monolayer decreased the aggregation of Ag particles and led to the formation of small Ag particles, which showed that TiO2 could effectively inhibit the aggregation and growth of Ag nanoparticles.
机译:在二维胶体阵列基板上制备了具有不同Ag厚度的TiO2 / Ag双层膜和共溅射具有不同TiO2含量的TiO2-Ag单层纳米帽阵列,以研究表面增强拉曼散射(SERS)性能。对于TiO2 / Ag双层,当Ag厚度增加时,SERS强度降低。同时,与纯的Ag单层相比,当亚层Ag为10nm时观察到显着的增强,这归因于由粗糙表面提供的电磁机理(EM)和电荷转移(CT)增强机理提供的金属-半导体协同效应。由TiO2-Ag复合成分组成。与TiO2 / Ag双层相比,共溅射的TiO2-Ag单层减少了Ag颗粒的聚集并导致了小的Ag颗粒的形成,这表明TiO2可以有效地抑制Ag纳米颗粒的聚集和生长。

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