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Magnetic-based silver composite microspheres with nanosheet-assembled shell for effective SERS substrate

机译:具有纳米片组装壳的磁性银复合微球,可用于有效的SERS基底

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摘要

Well-dispersed magnetic-based silver composite microspheres (Fe3O4@SiO2@Ag) with a nanosheet-assembled shell structure were synthesized at room temperature, where sonicating and mechanical stirring techniques were both employed and played important roles during the silver shell growth process. The results show that the nanosheet-assembled silver shell could be obtained and controlled by adjusting the concentration of citrate ions as a morphology directing-reagent. The gaps in or between cross-linked nanosheets in the shell of the composite microspheres were proposed to provide sufficient "hot spots" when they were used as a SERS substrate. The SERS measurements exhibit clear enhancement signals by using R6G as a probe molecule, and even at concentrations as low as 10~(-14) M, all enhancement peaks could be observed clearly. The film assembled from the composite microspheres exhibited good reproducibility across the entire area. Additionally, the magnetic Fe3O4@SiO2@Ag microspheres can be separated from solution rapidly, which shortened the detection time. Considering their excellent SERS performance, this kind of composite microsphere, which has both a SERS active shell and a magnetically separable core, would be very useful as an effective SERS substrate for detecting organic pollutants in solution.
机译:在室温下合成了具有纳米片组装壳结构的分散良好的磁性基银复合微球(Fe3O4 @ SiO2 @ Ag),其中超声处理和机械搅拌技术都在银壳生长过程中发挥了重要作用。结果表明,通过调节柠檬酸根离子的浓度作为形态指导剂,可以得到和控制纳米片组装的银壳。提出了在复合微球的壳中的交联纳米片之间或之间的间隙,当它们用作SERS基质时可提供足够的“热点”。通过使用R6G作为探针分子,SERS测量显示出清晰的增强信号,即使在低至10〜(-14)M的浓度下,也可以清楚地观察到所有增强峰。由复合微球组装而成的薄膜在整个区域都表现出良好的可重复性。此外,磁性Fe3O4 @ SiO2 @ Ag微球可以从溶液中快速分离,从而缩短了检测时间。考虑到它们出色的SERS性能,这种既具有SERS活性壳又具有磁可分离核的复合微球作为一种有效的SERS底物,可用于检测溶液中的有机污染物,将非常有用。

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