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Controllable colours and shapes of silver nanostructures based on pH: application to surface-enhanced Raman scattering

机译:基于pH值的银纳米结构可控制的颜色和形状:应用于表面增强拉曼散射

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摘要

This paper reports for the first time that the shape of silver nanostructures on quartz slides, from a nanoprism to a nanodisc, can be easily realized within a few minutes simply by adjusting the pH value of the immersion solution. Different colours of the quartz slide covered with Ag nanostructures appeared, from deep blue to yellow, corresponding to the shapes of Ag nanostructures changing from nanoprisms to nanodiscs. Surface-enhanced Raman scattering (SERS) activities of the silver nanoprisms and nanodiscs (obtained through adjusting the pH values) were checked using p-aminothiophenol (p-ATP) as a probe molecule at both near-infrared (1064 nm) and visible light (514.5 nm) excitation. The results obtained further confirmed the enhancement mechanism of SERS based on the coupling between the surface plasmon resonance (SPR) of the substrates and the laser excitation wavelength. This work will be of great significance in understanding the SERS enhancement mechanism and in the fabrication of nanoparticle films for biosensing.
机译:本文首次报告,只需调节浸入溶液的pH值,即可在几分钟之内轻松实现从纳米棱镜到纳米光盘的石英玻片上银纳米结构的形状。覆盖有银纳米结构的石英玻片出现了不同的颜色,从深蓝色到黄色,与从纳米棱镜到纳米圆盘的银纳米结构的形状相对应。使用对氨基硫酚(p-ATP)作为探针分子在近红外(1064 nm)和可见光下检查了银纳米棱镜和纳米光盘的表面增强拉曼散射(SERS)活性(通过调节pH值获得)。 (514.5 nm)激发。获得的结果进一步证实了基于基底的表面等离振子共振(SPR)和激光激发波长之间的耦合的SERS增强机制。这项工作对理解SERS增强机理和用于生物传感的纳米颗粒膜的制造具有重要意义。

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