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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Incidence angle dependence of the enhancement factor in attenuated total reflection surface enhanced infrared absorption spectroscopy studied by numerical solution of the vectorial Maxwell equations
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Incidence angle dependence of the enhancement factor in attenuated total reflection surface enhanced infrared absorption spectroscopy studied by numerical solution of the vectorial Maxwell equations

机译:用矢量麦克斯韦方程组数值解研究衰减全反射面增强红外吸收光谱中增强因子的入射角依赖性

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摘要

The finite element method (FEM) was used to solve the time-harmonic Maxwell equations in a study of the effect of the incidence angle of infrared light on the surface enhancement caused by colloidal gold particles in attenuated total reflection surface enhanced infrared absorption spectroscopy (ATR-SEIRAS). The spectral enhancement factor was obtained from computations of absorbance from a thin organic layer in the presence and absence of the metal nanostructure. For computations of an isolated particle the enhancement factor is high around the critical angle and decreases with an increase in incidence angle. This trend was also observed in experiments performed with gold particles immobilised on a silane modified silicon ATR crystal. Computations where gold particles are touching each other show low enhancement factors around the critical angle and an increase with increasing incidence angle. These two opposing trends are analysed based on the electric field distribution around the particle.
机译:在研究红外光的入射角对衰减全反射表面增强红外吸收光谱法(ATR)中胶体金颗粒引起的表面增强的影响时,使用有限元方法(FEM)求解时谐Maxwell方程。 -SEIRAS)。在存在和不存在金属纳米结构的情况下,通过计算薄有机层的吸光度获得光谱增强因子。对于隔离粒子的计算,增强因子在临界角附近较高,并且随着入射角的增加而减小。在将金颗粒固定在硅烷改性的硅ATR晶体上进行的实验中也观察到了这种趋势。金粒子相互接触的计算在临界角附近显示出较低的增强因子,并且随着入射角的增加而增加。基于粒子周围的电场分布来分析这两个相反的趋势。

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