首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Comparison of Resonant and Non Resonant Conditions on the Concentration Dependence of Surface Enhanced Raman Scattering from a Dye Adsorbed on Silver Colloid
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Comparison of Resonant and Non Resonant Conditions on the Concentration Dependence of Surface Enhanced Raman Scattering from a Dye Adsorbed on Silver Colloid

机译:共振和非共振条件对吸附在银胶体上的染料表面增强拉曼散射浓度依赖性的比较

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摘要

Surface enhanced Raman scattering (SERS) and surface enhanced resonance Raman scattering (SERRS) from a silver colloid suspension are compared using a dye designed to bond strongly to a silver surface. Titration of the dye into a silver colloid suspension caused aggregation in a controlled manner without an aggregating agent being added. Concentrations of dye equivalent to between 5 * 10~(-9) and 10~(-3) M in the final dilution before adsorption to the silver were used. The results suggest that monolayer coverage of the surface occurs at approximately 10~(-6) M. Above this concentration, the suspensions are less stable, and the relationship between intensity and concentration is complex. Below this concentration, three main regions can be identified by electronic absorption spectroscopy. At dye concentrations up to 7.5 * 10~(-8) M, there is little evidence of aggregation, although there are changes in the spectra ascribed here to surface changes caused by dye adsorption. Between 7.5 * 10~(-8) M and 2.5 * 10~(-7) M, a well-defined small aggregate appears to occur and above 2.5 * 10~(-7) M larger less well-defined aggregates form. SERRS gave linear concentration dependence below 7.5 * 10~(-8) M suggesting scattering from single particles. A changeover region occurs close to where the first evidence of aggregation is detected by electronic spectroscopy, and at higher concentrations up to about monolayer coverage a second linear region was obtained. SERS below the concentration at which aggregation is detected by electronic spectroscopy was weak and difficult to obtain. At higher concentrations, the SERS gradients are steeper and the maximum enhancement observed is within a factor of 4 of that obtained in SERRS. The study shows that there is a different mechanism in SERRS compared to SERS with single particle enhancement being much greater in SERRS.
机译:使用设计成牢固结合到银表面的染料,比较了银胶体悬浮液的表面增强拉曼散射(SERS)和表面增强共振拉曼散射(SERRS)。将染料滴定到胶体银悬浮液中,可以在不添加聚集剂的情况下以受控方式聚集。在吸附到银之前,使用最终稀释液中相当于5 * 10〜(-9)和10〜(-3)M之间的染料浓度。结果表明,单层覆盖发生在大约10〜(-6)M。高于该浓度,悬浮液不稳定,强度和浓度之间的关系复杂。低于该浓度,可以通过电子吸收光谱法鉴定三个主要区域。当染料浓度高达7.5 * 10〜(-8)M时,几乎没有聚集的迹象,尽管此处光谱的变化归因于染料吸附引起的表面变化。在7.5 * 10〜(-8)M和2.5 * 10〜(-7)M之间,出现了明确定义的小聚集体,而在2.5 * 10〜(-7)M以上,则出现了较大的不太明确的聚集体。 SERRS的线性浓度依赖性低于7.5 * 10〜(-8)M,表明从单个颗粒中散射。转换区域靠近通过电子光谱检测到第一聚集迹象的区域,并且在较高浓度下直至约单层覆盖,获得了第二线性区域。低于通过电子光谱检测到聚集的浓度的SERS弱并且难以获得。在较高浓度下,SERS梯度更陡,观察到的最大增强在SERRS中获得的最大增强的4倍之内。研究表明,与SERS相比,SERRS中存在不同的机制,而单颗粒增强在SERRS中要大得多。

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