首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Simple strategy to improve surface-enhanced Raman scattering based on electrochemically prepared roughened silver substrates
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Simple strategy to improve surface-enhanced Raman scattering based on electrochemically prepared roughened silver substrates

机译:基于电化学制备的粗糙银衬底的改善表面增强拉曼散射的简单策略

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摘要

We develop an easy and effective pathway to improve surface-enhanced Raman scattering (SERS) effects of probe molecules of Rhodamine 6G (R6G) adsorbed on electrochemically prepared roughened Ag substrates. In general SERS studies, SERS-active metal substrates are first prepared. Then probe molecules are adsorbed on them to evaluate the relative SERS effects. In this study, we employ electrochemical oxidation-reduction cycle (ORC) treatments in 0.1 M KCl solutions containing probe molecules of 2×10~(-5) M R6G to prepare R6G-adsorbed SERS-active Ag substrates for one step. Encouragingly, based on this strategy, the SERS intensity of adsorbed R6G can be increased by 1 order of magnitude, as compared with that of R6G adsorbed on a roughened Ag substrate beforehand, which was generally shown in the literature. Moreover, this improved SERS effect based on this strategy is also effective for 2×10 ~(-9) M probe molecules, which is at a level of single molecule detection based on Ag colloids. It is also effective for probe molecules of ClO_4~- with low Raman cross section and for other electrochemically prepared SERS-active substrates of Au. Further analyses indicate that the increase in SERS activity in this new method is most likely due to the incorporation of more chloride ions into the substrate.
机译:我们开发了一种简单有效的途径来改善吸附在电化学制备的粗糙Ag基底上的若丹明6G(R6G)探针分子的表面增强拉曼散射(SERS)效应。在一般的SERS研究中,首先准备SERS活性金属基材。然后将探针分子吸附在其上以评估相对SERS效应。在这项研究中,我们在包含2×10〜(-5)M R6G探针分子的0.1 M KCl溶液中采用电化学氧化还原循环(ORC)处理,以一步制备R6G吸附的SERS活性Ag底物。令人鼓舞的是,基于这种策略,与预先吸附在粗糙化的Ag衬底上的R6G相比,可以将吸附的R6G的SERS强度提高1个数量级,这在文献中已得到普遍证明。此外,基于该策略的这种改善的SERS效果对于2×10〜(-9)M探针分子也有效,处于基于Ag胶体的单分子检测水平。它对低拉曼横截面的ClO_4〜-探针分子和其他电化学制备的Au的SERS活性底物也有效。进一步的分析表明,这种新方法中SERS活性的增加很可能是由于向基质中引入了更多的氯离子。

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