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首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Fabrication of nanostructured silver substrates for surface-enhanced Raman spectroscopy
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Fabrication of nanostructured silver substrates for surface-enhanced Raman spectroscopy

机译:用于表面增强拉曼光谱的纳米结构银基底的制备

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摘要

Four nanostructured Ag substrates have been fabricated with different surfacemorphologies and tested with surface-enhanced Raman scattering (SERS) experiments by adsorption of adenine. Their SERS efficiency has been compared and related to the surface roughness resulting from atomic force microscopy measurements. Chemical etching of silver by thiourea/ Fe(III)nitrate produces homogeneously roughened plates, exhibiting the largest three-dimensional surface and the best SERS enhancement. They mostly exhibit surface protrusions with sizes around 200 nm, thus matching the best condition for obtaining SERS enhancement by laser excitation at 785 nm. This is quite important in the case of biomolecules, whose samples often present strong fluorescence bands, which usually are not observed with red-shifted exciting lines. Moreover, these Ag platforms, owing to their uniform nanostructured surfaces, are suitable for obtaining reproducible results from microRaman investigation. In conclusion, the present nanofabrication of Ag surfaces allows obtaining SERS-active substrates, which combine high reproducibility and sensitivity and can be successfully employed in the molecular recognition of different organic ligands or biomolecules like nucleic acids and proteins.
机译:已经制造了四种具有不同表面形态的纳米结构Ag基板,并通过腺嘌呤的吸附进行了表面增强拉曼散射(SERS)实验的测试。他们的SERS效率已经过比较,并且与原子力显微镜测量产生的表面粗糙度有关。用硫脲/硝酸Fe(III)对银进行化学蚀刻可产生均匀粗糙的板,具有最大的三维表面和最佳的SERS增强。它们大多表现出大小约为200 nm的表面突起,因此符合通过785 nm激光激发获得SERS增强的最佳条件。这对于生物分子而言非常重要,因为生物分子的样品通常会呈现出很强的荧光带,而荧光带通常不会出现红移的激发线。此外,这些银平台由于其均匀的纳米结构表面,适合用于从显微拉曼研究中获得可再现的结果。总之,本发明的银表面的纳米制造允许获得具有高再现性和灵敏度的SERS活性底物,并且可以成功地用于分子识别不同的有机配体或生物分子,如核酸和蛋白质。

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