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Surface-plasmon resonance spectrometry and characterization of absorbing liquids

机译:表面等离子体共振光谱法和吸收液体的表征

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The effect of absorption of the sample medium on the surface-plasmon resonance (SPR) characteristics is analyzed by approximate analytical and exact numerical models. We show that absorption leads to specific changes in the value of reflectivity near the SPR angle and that these can be used for absorbance detection. The strongest absorption-induced change in reflectivity occurs at two values of metal film thickness 128 and 55 nm for a gold film and λ=632.8 nm). Using a sample solution of Rhodamine 700 in ethanol, we measured the characteristic changes in the SPR angle and in reflectivity over the wavelength interval encompassing the strong absorption band at 610-680 nm. The possibility of the simultaneous determination of the refractive index and absorption from SPR measurements is demonstrated and has the potential for substance-specific detection.
机译:通过近似分析模型和精确数值模型分析了样品介质吸收对表面等离子体共振(SPR)特性的影响。我们表明吸收会导致SPR角附近的反射率值发生特定变化,并且这些变化可用于吸收率检测。在金膜的金属膜厚度为128和55 nm的两个值处(λ= 632.8 nm),吸收率引起的反射率变化最强。使用若丹明700在乙醇中的样品溶液,我们测量了SPR角和反射率在包括610-680 nm的强吸收带在内的整个波长范围内的特征变化。同时显示了通过SPR测量同时确定折射率和吸收率的可能性,并且具有进行特定物质检测的潜力。

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