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A polymer-based SERS-active substrate with gyroid-structured gold multibranches

机译:聚合物基SERS活性底物,具有螺旋结构的金多支链

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Here, we suggest an effective method to create a three-dimensional SERS-active substrate using a nanoporous polymer with bicontinuous nanochannels as a template for electroless plating of gold (Au), resulting in the formation of Au multibranches with sharp tips and corners for high-density and uniformly distributed hotspots as reliable SERS devices for detection. Also, by taking advantage of easy processing of polymeric materials, the polymer-based SERS-active substrate can be effectively fabricated in a large area for device design with mechanical robustness. Crystal violet and p-carotene molecules are used to demonstrate the superior SERS detection sensitivity with high reproducibility and stability using the polymer-based SERS-active substrate, suggesting a new approach to fabricate materials for the detection of chemicals with an average enhancement factor up to 108.
机译:在这里,我们建议一种有效的方法来创建三维SERS活性基材,该方法使用具有双连续纳米通道的纳米多孔聚合物作为化学镀金(Au)的模板,从而形成具有尖锐的尖角和尖角的Au多支链,从而形成高纯度的金。密度高且分布均匀的热点作为可靠的SERS检测设备。而且,通过利用容易处理的聚合物材料的优势,可以在大面积上有效地制造基于聚合物的SERS活性基材,以用于具有机械坚固性的器件设计。使用基于聚合物的SERS活性底物,结晶紫和对胡萝卜素分子被证明具有较高的重现性和稳定性,并具有优异的SERS检测灵敏度,这表明一种新的方法可用于制备化学物质的检测,其平均增强因子可达108。

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