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Ag@Au hexagonal nanorings: synthesis, mechanistic analysis and structure-dependent optical characteristics

机译:Ag @ Au六角形纳米环:合成,机理分析和与结构有关的光学特性

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Well-shaped Ag@Au hexagonal nanorings (Ag@Au HNRs) were successfully synthesized with the assistance of Ag hexagonal nanoplates as structure-directing templates in a galvanic replacement route, and their optical characteristics were studied in detail. During the synthetic process, the morphology of the Ag@Au HNRs was found to be strongly depended on the dosage of HAuCl4 added into the template solution. Both the experimental and calculated absorption spectra showed that the red-shift of localized surface plasmon resonance (LSPR) peaks of the Ag@Au HNRs obeyed a modified Lorentz function with increasing dosage of HAuCl4 solution, which was also explained by the plasmon hybridization of the Ag@Au HNRs. Moreover, the surface-enhanced Raman scattering (SERS) characteristics of Ag@Au HNRs were investigated by using 4-mercaptobenzoic acid (4MBA) as a Raman reporter molecule. And the as-prepared Ag@Au HNRs exhibit excellent SERS performances with an enhancement factor similar to 10(6), especially for the Ag@Au HNR prepared at 160 mu l HAuCl4 solution due to its strongest plasmon electric-field enhancement. It reveals that the as-synthesized Ag@Au HNRs possess great potential for the application in ultrasensitive biosensors.
机译:以银六方纳米板为结构导向模板,以电取代途径成功合成了形状良好的银六方六方纳米环(Ag @ Au HNRs),并对其光学特性进行了详细研究。在合成过程中,发现Ag @ Au HNRs的形态在很大程度上取决于添加到模板溶液中的HAuCl4的剂量。实验和计算的吸收光谱均表明,随着HAuCl4溶液剂量的增加,Ag @ Au HNRs的局部表面等离振子共振(LSPR)峰的红移服从了改进的洛仑兹功能,这也可以通过与HauCl4的等离激元杂交来解释。 Ag @ Au HNR。此外,通过使用4-巯基苯甲酸(4MBA)作为拉曼报告分子研究了Ag @ Au HNRs的表面增强拉曼散射(SERS)特性。所制备的Ag @ Au HNRs具有优异的SERS性能,其增强因子与10(6)相似,尤其是在160μlHAuCl4溶液中制备的Ag @ Au HNR由于其最强的等离子体激元电场增强作用。结果表明,合成后的Ag @ Au HNRs在超灵敏生物传感器中具有广阔的应用前景。

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