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Facile fabrication of silver nanoparticle-coated silica-C18 core–shell microspheres and their applications in SERS detection

机译:纳米银包覆二氧化硅-C18核-壳微球的简便制备及其在SERS检测中的应用

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We present a one-step method to prepare silver nanoparticle (Ag NP) shell coated functional microspheres as a surface-enhanced Raman scattering (SERS) substrate. The microspheres, linked by n-octadecane chains, were bonded and covered by aggregations of Ag NPs. The process of the coverage of Ag NPs on a microsphere surface was investigated by scanning electron microscopy, and the SERS activity was optimized using rhodamine 6G as a probe molecule. This spatial structure composed of inner n-octadecane chains and an outer coarse silver shell achieved dual functionality of molecule adsorption and sensing, due to its capacity to capture analytes with alkyl chains, thus achieving effective SERS detection with bare compacted Ag NPs. The SERS detection of low concentrations of 2.6 × 10?7 M, 2.5 × 10?8 M and 5.4 × 10?8 M could be achieved for naphthalene, 2,6-dimethylnaphthalene, and 1-naphthol, respectively. The prepared Ag NP shell composite microspheres would expand the range of applications for SERS, and provide an effective method for the quick SERS detection of poor-SERS-responsive molecules.
机译:我们提出了一种制备银纳米颗粒(Ag NP)壳涂层的功能性微球作为表面增强拉曼散射(SERS)衬底的一步法。由 n -十八烷链连接的微球被Ag NPs聚集并覆盖。通过扫描电子显微镜研究了Ag NPs在微球表面的覆盖过程,并以罗丹明6G为探针分子优化了SERS活性。由内部 n 十八烷链和外部粗银壳组成的空间结构,由于其具有捕获烷基链分析物的能力,因此实现了分子吸附和传感的双重功能,从而在裸露的情况下实现了有效的SERS检测压实的银纳米颗粒。低浓度2.6×10 ?7 M,2.5×10 ?8 M和5.4的SERS检测萘,2,6-二甲基萘和1-萘酚分别达到×10 ?8 M。制备的Ag NP壳复合微球将扩展SERS的应用范围,并为快速SERS检测不良SERS反应性分子提供有效方法。

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