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首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Cyclic electroplating and stripping of silver on Au@SiO2 core/shell nanoparticles for sensitive and recyclable substrate of surface-enhanced Raman scattering
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Cyclic electroplating and stripping of silver on Au@SiO2 core/shell nanoparticles for sensitive and recyclable substrate of surface-enhanced Raman scattering

机译:在Au @ SiO2核/壳纳米粒子上循环电镀和剥离银,用于表面增强拉曼散射的敏感且可回收的基底

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摘要

A simple and convenient methodology to fabricate silver-coated Au@SiO2 core/shell nanomaterials (Au@SiO2@Ag nanostructures) is developed by cyclic electroplating and stripping of AgNO3 on the surface of Au@SiO2 core/shell nanoparticles, and the proposed nanostructures served as sensitive and reproducible surface-enhanced Raman scattering (SERS) substrates. Silver coverage of nanostructured Au@SiO2@Ag could be easily controlled by electrodeposition time without substrate motion. The Au@SiO2@Ag nanostructures possess a hexagonal array multiplying the hot spots. SERS of the nanostructures was examined at different electrodeposition times using rhodamine B (RdB) as probe molecule and 785 nm excitation. Optimum SERS was observed when silver was electrodeposited at -0.4 V for 1 min. RdB can be detected down to 10~(-11) M even without the resonance SERS effect, and the enhancement factor was found at 1.03 x 10~5. Additionally, silver shells could be easily stripped electrochemically when immersed in the H2SO4 solution for rebuilding and recycling the SERS substrates. The results validate the feasibility for quantitative detection of biomolecules in organisms and combine the advantages of recyclability and sensitivity.
机译:通过在Au @ SiO2核/壳纳米颗粒表面循环电镀和剥离AgNO3,开发了一种简便的方法来制备镀银的Au @ SiO2核/壳纳米材料(Au @ SiO2 @ Ag纳米结构),并提出了所提出的纳米结构用作敏感且可重现的表面增强拉曼散射(SERS)底物。纳米结构的Au @ SiO2 @ Ag的银覆盖率可以通过电沉积时间轻松控制,而无需基板运动。 Au @ SiO2 @ Ag纳米结构具有六边形阵列,可倍增热点。使用若丹明B(RdB)作为探针分子和785 nm激发,在不同的电沉积时间下检查了纳米结构的SERS。当银在-0.4 V电沉积1分钟时,观察到最佳SERS。即使没有共振SERS效应,RdB仍可检测到10〜(-11)M,增强因子为1.03 x 10〜5。此外,当将银壳浸入H2SO4溶液中以重建和回收SERS基板时,很容易用电化学方法剥离。结果证实了定​​量检测生物体中生物分子的可行性,并结合了可回收性和敏感性的优点。

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