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首页> 外文期刊>Journal of Colloid and Interface Science >Surface modification of silver nanofilms for improved perchlorate detection by surface-enhanced Raman scattering
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Surface modification of silver nanofilms for improved perchlorate detection by surface-enhanced Raman scattering

机译:银纳米膜的表面改性,以通过表面增强拉曼散射改善高氯酸盐的检测

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Surface-enhanced Raman scattering (SERS), as one of the most sensitive spectroscopic analysis methods, has been investigated extensively for the detection of environmental contaminants in recent years. In this work, we reported the new development of robust SERS substrates for rapid and sensitive sensing of aqueous perchlorate, a widespread environmental contaminant. The fabrication of the substrates consisted of two simple steps: (a) formation of Ag nanofilms on Cu and surface-roughened Cu foils (Ag/Cu and Ag/rCu nanofilms) using a controllable and inexpensive one-step electroless plating process, and (b) surface modification of the Ag nanofilms with cysteamine (Cys) self-assembly monolayer (SAM) (Cys-Ag/Cu and Cys-Ag/rCu substrates). Due to the strong affinity of -NH3+ groups of the Cys molecules for perchlorate ions, the rapid SERS detection of perchlorate has been realized with a limit of detection (LOD) down to 5μgL ~(-1) (ppb) for aqueous samples without need for drying. Various calibration curves with good linear relationships were obtained, indicating the quantification potential of SERS analysis of perchlorate using these new substrates. It was found that the neutral pH yielded the maximum SERS signals, and 85% of original sensitivity was remained in 5days of storage time in the air, indicating the substrates are fairly stable. Within 10 regeneration-reuse cycles, the SERS signals of perchlorate kept in the range of 85-105% of the original value, verifying its reusability.
机译:作为最灵敏的光谱分析方法之一,表面增强拉曼散射(SERS)近年来已被广泛研究以检测环境污染物。在这项工作中,我们报告了用于快速,灵敏地检测高氯酸根(一种广泛的环境污染物)的坚固SERS底物的新开发。基板的制造包括两个简单步骤:(a)使用可控且廉价的一步化学镀工艺在铜和表面粗糙化的铜箔(Ag / Cu和Ag / rCu纳米膜)上形成Ag纳米膜,以及( b)用半胱胺(Cys)自组装单层(SAM)(Cys-Ag / Cu和Cys-Ag / rCu底物)对Ag纳米膜进行表面修饰。由于Cys分子的-NH3 +基团对高氯酸根离子具有很强的亲和力,因此无需对含水样品的检测限(LOD)低至5μgL〜(-1)(ppb),就可以实现高氯酸根的SERS快速检测。干燥。获得了具有良好线性关系的各种校准曲线,表明使用这些新底物对高氯酸盐进行SERS分析的定量潜力。发现中性pH产生最大的SERS信号,并且在空气中储存5天后保留了原始灵敏度的85%,这表明底物相当稳定。在10个再生-重复使用周期内,高氯酸盐的SERS信号保持在原始值的85-105%之间,从而证明了其可重复使用性。

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