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用于快速检测表面增强拉曼散射的槽型纳米板组装体。

Grooved nanoplate assembly for rapid detection of surface enhanced Raman scattering.

机构信息

Department of Physics, Applied Optics Beijing Area Major Laboratory, Beijing Normal University, Beijing, 100875, China.

出版信息

Nanoscale. 2017 Oct 19;9(40):15390-15396. doi: 10.1039/c7nr05228f.

Abstract

Rapid detection of surface enhanced Raman scattering (SERS) signals is in great demand in the fields of biological medicine and environmental monitoring. Herein, a grooved silver nanoplate assembly (GSNA) with an abundance of multiscale gaps has been proposed for the first time and skillfully synthesized to act as an excellent platform for surface enhanced Raman spectroscopy with ultrafast and ultrasensitive detection. By effectively combining the hotspots effect of nanogaps and the trapping effect of gaps in the scale of subwavelength, the Raman signal was greatly enhanced by a factor of 10 and the detection limit of Rhodamine 6G (R6G) could reach 5 × 10 M. Moreover, based on the perfect adsorption of the multiscale gaps, the probe molecule could be detected immediately after the analyte was mixed with the GSNA. In addition, the mixed analytes of R6G and crystal violet could be easily distinguished by Raman signal detection based on the fabricated basement. This study provides an effective SERS platform to achieve ultrafast Raman detection with ultrasensitivity in the fields of chemical analysis, biomedicine and environmental monitoring.

摘要

快速检测表面增强拉曼散射(SERS)信号在生物医学和环境监测等领域有很大的需求。本文首次提出并巧妙合成了具有丰富多尺度间隙的槽状银纳米板组装体(GSNA),作为表面增强拉曼光谱的优异平台,具有超快和超灵敏的检测性能。通过有效结合纳米间隙的热点效应和亚波长尺度间隙的捕获效应,拉曼信号增强了 10 倍,罗丹明 6G(R6G)的检测限可达 5×10 M。此外,基于多尺度间隙的完美吸附,在分析物与 GSNA 混合后,探针分子可以立即被检测到。此外,基于构建的基底,可以通过拉曼信号检测轻松区分 R6G 和结晶紫的混合分析物。本研究为化学分析、生物医学和环境监测等领域实现超灵敏的超快拉曼检测提供了有效的 SERS 平台。

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