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基于温度依赖性化学吸附的表面增强拉曼散射增强:微量量热法证据。

SERS Enhancement on the Basis of Temperature-Dependent Chemisorption: Microcalorimetric Evidence.

作者信息

Roy Chandra Nath, Ghosh Debasmita, Mondal Somrita, Kundu Somashree, Maiti Susmita, Saha Abhijit

机构信息

Chemistry Division, UGC-DAE Consortium for Scientific Research, Kolkata Centre, Kolkata, 700098, India), Fax: (+91) 33-23357008.

出版信息

Chemphyschem. 2016 Dec 15;17(24):4144-4148. doi: 10.1002/cphc.201600941. Epub 2016 Nov 9.

Abstract

The mechanism of surface-enhanced Raman spectroscopy (SERS) is not very clear in view of the magnitude of the contribution of electromagnetic factor as well as the chemical mechanism. This report presents the extent of adsorption at different temperatures in terms of signal enhancements in SERS employing silver nanoparticles (AgNPs) of various shapes as substrate and dye molecules, crystal violet or Rhodamine 6G, as model Raman probes. Initially, the SERS signal increases with increasing temperature until a maximum intensity is reached, before it gradually decreases with increasing temperature. This trend is independent of the shape of the Raman substrates and probes. However, the temperature at which maximum intensity is obtained may depend upon the nature of the Raman probe. The energetics involved in the chemisorption process between dye molecules and AgNPs were determined through isothermal titration calorimetry and their implications for the observed SERS signals were assessed. The maximum heat change occurred at the temperature at which the maximum signal enhancement in SERS was obtained and the enhanced interaction at optimum temperature was confirmed by absorption spectroscopy.

摘要

鉴于电磁因素的贡献程度以及化学机制,表面增强拉曼光谱(SERS)的机制尚不完全清楚。本报告以各种形状的银纳米颗粒(AgNPs)为底物,以结晶紫或罗丹明6G等染料分子为模型拉曼探针,通过SERS中的信号增强来呈现不同温度下的吸附程度。最初,SERS信号随温度升高而增加,直至达到最大强度,随后随温度升高而逐渐降低。这种趋势与拉曼底物和探针的形状无关。然而获得最大强度的温度可能取决于拉曼探针的性质。通过等温滴定量热法确定了染料分子与AgNPs之间化学吸附过程中的能量学,并评估了其对观察到的SERS信号的影响。最大热变化发生在获得SERS最大信号增强的温度处,并且通过吸收光谱证实了在最佳温度下增强的相互作用。

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