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Carbon nanowalls as a platform for biological SERS studies

机译:碳纳米墙作为生物SERS研究的平台

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摘要

Herein we report about developing new type of Surface Enhanced Raman Scattering (SERS) substrates based on Au-decorated carbon nanowalls. The designed substrates possess high specific surface area and high sensitivity. Chemical stability of Au perfectly blends with electrical properties and high value of specific surface area of carbon nanowalls. Created structures were applied to detect signals of a typical molecule used for SERS substrates testing, rhodamine 6G, which exhibits electronic absorption in the visible area of spectrum, and biomacromolecules such as tryptophan, guanine, bovine serum albumin and keratin hydrolysates, whose electronic absorption is in the ultraviolet region of spectrum and lies far from the Au plasmonic resonance. The obtained signals for these compounds suggest that the developed substrate is a prominent platform for the detection of biological macromolecules. The properties of the substrate, including its morphology and Au film thickness, as well as the analyte deposition method, were optimized to achieve the optimum Raman signal enhancement. Electric field distribution in the designed structures was calculated to describe the observed dependence of SERS activity on the substrate morphology.
机译:在这里,我们报告有关基于Au装饰的碳纳米壁开发新型表面增强拉曼散射(SERS)衬底的信息。设计的基材具有高的比表面积和高的灵敏度。金的化学稳定性与电性能和高价值的碳纳米墙比完美融合。将创建的结构应用于检测用于SERS底物测试的典型分子,若丹明6G的信号,该分子在可见光谱范围内表现出电子吸收,以及生物大分子如色氨酸,鸟嘌呤,牛血清白蛋白和角蛋白水解物,其电子吸收为在光谱的紫外区域中并且远离Au等离子体共振。这些化合物获得的信号表明,已开发的底物是检测生物大分子的重要平台。优化基板的属性,包括其形态和金膜厚度,以及分析物沉积方法,以实现最佳的拉曼信号增强。计算设计结构中的电场分布,以描述观察到的SERS活性对底物形态的依赖性。

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