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Theoretical and experimental investigations of plasmonic properties of Ag nanosphere and SiO_2/Ag core-shell nanostructure

机译:Ag纳米和SiO_2 / Ag核心壳纳米结构等离子体性能的理论与实验研究

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Due to localized surface plasmon resonance (LSPR) properties of plasmonic nanostructures, the electric field is enhanced in their vicinity which is exploited for sensing. Here, the LSPR properties of an Ag nanosphere and a SiO_2/Ag core-sell are theoretically studied and their characteristics are experimentally investigated. The theoretical study of the nanostructures showed one intensive plasmon mode whereas only SiO_2/Ag core-shell showed the tunable plasmonic properties so that it can be tuned to the desired spectral region by changing core-shell design and the refractive index of the surrounding medium. Optimized SiO_2/Ag core-shell showed significant LSPR sensitivity up to 523.6 nm/RIU. SiO_2/Ag core-shells were prepared using modified St?ber method. By controlling the reaction conditions, nanoparticles with the size of 50nmwere fabricated without using a coupling agent, based on the mixture of silver ions in solution including water, ethanol and ammonia, for the direct synthesis of SiO_2/Ag core-shells with no aggregation.
机译:由于等离子体纳米结构的局域表面等离子体共振(LSPR)特性,其附近的电场增强,可用于传感。本文从理论上研究了银纳米球和SiO 2/Ag核的LSPR特性,并对其特性进行了实验研究。纳米结构的理论研究显示了一种密集的等离子体激元模式,而只有SiO_2/Ag核壳显示了可调谐的等离子体特性,因此可以通过改变核壳设计和周围介质的折射率将其调谐到所需的光谱区域。优化后的sio2/Ag核壳显示出显著的LSPR灵敏度,最高可达523.6nm/RIU。采用改性St?ber方法。通过控制反应条件,在不使用偶联剂的情况下,以水、乙醇和氨等溶液中的银离子混合物为基础,制备了尺寸为50nm的纳米颗粒,用于直接合成SiO 2/Ag核壳,无需聚集。

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