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首页> 外文期刊>The Journal of Chemical Physics >A monolayer of hierarchical silver hemi-mesoparticles with tunable surface topographies for highly sensitive surface-enhanced Raman spectroscopy
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A monolayer of hierarchical silver hemi-mesoparticles with tunable surface topographies for highly sensitive surface-enhanced Raman spectroscopy

机译:具有可调整表面形貌的分层银半中观微粒的单层,用于高度敏感的表面增强拉曼光谱

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We proposed a facile green synthesis system to synthesize large-scale Ag hemi-mesoparticles monolayer on Cu foil. Ag hemi-mesoparticles have different surface morphologies on their surfaces, including ridge-like, meatball-like, and fluffy-like shapes. In the reaction, silver nitrate was reduced by copper at room temperature in dimethyl sulfoxide via the galvanic displacement reaction. The different surface morphologies of the Ag hemi-mesoparticles were adjusted by changing the reaction time, and the hemi-mesoparticle surface formed fluffy-spherical nanoprotrusions at longer reaction time. At the same time, we explored the growth mechanism of silver hemi-mesoparticles with different surface morphologies. With 4-mercaptobenzoic acid as Raman probe molecules, the fluffy-like silver hemi-mesoparticles monolayer with the best activity of surface enhanced Raman scattering (SERS), the enhancement factor is up to 7.33 x 10(7) and the detection limit can reach 10(-10) M. SERS measurements demonstrate that these Ag hemi-mesoparticles can serve as sensitive SERS substrates. At the same time, using finite element method, the distribution of the localized electromagnetic field near the particle surface was simulated to verify the enhanced mechanism. This study helps us to understand the relationship between morphology Ag hemi-mesoparicles and the properties of SERS. (C) 2016 AIP Publishing LLC.
机译:我们提出了一种简便的绿色合成系统,以在铜箔上合成大规模的Ag半中观粒子单层。银半中观粒子在其表面上具有不同的表面形态,包括山脊状,丸子状和蓬松状。在该反应中,通过电流置换反应,在室温下在二甲基亚砜中用铜将硝酸银还原。通过改变反应时间来调节Ag半中观粒子的不同表面形态,并且半中观粒子表面在更长的反应时间上形成蓬松的球形纳米突起。同时,我们探索了具有不同表面形态的银半中观粒子的生长机理。以4-巯基苯甲酸为拉曼探针分子,单层蓬松状的银半中观粒子具有最佳的表面增强拉曼散射(SERS)活性,增强因子高达7.33 x 10(7),检出限可达到10(-10)M. SERS测量表明,这些银半金属微粒可作为敏感的SERS底物。同时,利用有限元方法对粒子表面附近的局部电磁场分布进行了模拟,以验证其增强机理。这项研究有助于我们理解银半同胚性形态与SERS的性质之间的关系。 (C)2016 AIP出版有限责任公司。

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