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Improved surfaced-enhanced Raman scattering based on electrochemically roughened silver substrates modified through argon plasma treatment

机译:基于氩等离子体处理改性的电化学粗糙化银基底的改进的表面增强拉曼散射

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摘要

A new surface-enhanced Raman scattering (SERS)-active silver substrate has been developed by using a combination of electrochemical triangular-wave oxidation/reduction cycles (ORCs) and argon plasma treatment to roughen the substrate, increasing its SERS effect. In the first step, a mechanically polished Ag substrate was roughened through triangular-wave ORCs in an aqueous solution containing 0.1 MKCl. Next, the electrochemically roughened Ag substrate was treated with radio frequency-excited Ar plasma. 2,2'-Bipyridine (Bipy) was used as a Raman probe to evaluate the SERS enhancement provided by the new Ag substrate. Encouragingly, we found that the SERS intensity of Bipy increased up to sevenfold, with the SERS spectrum of Bipy exhibiting better resolution, when using the fully treated Ag substrate, relative to the use of an electrochemically ORCs-treated Ag substrate that had not been subjected to plasma treatment. The improved SERS effects were related to the coalescence of grains and hills as well as to the formation of dells and pits during the electrochemical ORCs and Ar plasma roughening processes.
机译:通过结合电化学三角波氧化/还原循环(ORC)和氩等离子体处理来使基板变粗糙,从而开发了一种新的增强表面拉曼散射(SERS)活性银基板,从而提高了其SERS效果。在第一步中,将机械抛光的Ag基材通过三角波ORC在含有0.1 MKCl的水溶液中进行粗糙化处理。接着,用射频激发的Ar等离子体处理电化学粗糙化的Ag衬底。 2,2'-联吡啶(Bipy)被用作拉曼探针,以评估由新的Ag底物提供的SERS增强。令人鼓舞的是,我们发现,当使用完全处理的Ag衬底时,Bipy的SERS强度增加了七倍,并且Bipy的SERS光谱显示出更好的分辨率,相对于使用未经化学ORCs处理的Ag衬底进行等离子处理。 SERS效果的改善与晶粒和山丘的聚结以及电化学ORC和Ar等离子体粗糙化过程中形成的凹坑和凹坑有关。

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