用有限元法计算粒子表面增强红外吸收光谱

IF 2.781
G. Vasan, Ying Chen, A. Erbe
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引用次数: 13

摘要

采用有限元法求解时谐Maxwell方程,模拟内反射几何的表面增强红外吸收光谱(SEIRAS)实验,计算了硅/空气界面吸附颗粒附近有机物的全红外吸收光谱。定义了由金属的存在引起的增强因子,并研究了其与颗粒大小和排列的关系。增强因子随粒径的增大而增大。通过电场模式和在待分析区域放置探针材料,分析了部分表面对总体吸光度的贡献。对于孤立粒子,粒子与表面之间的间隙对整个光谱的贡献很大。此外,在接触粒子之间的区域发现了很大的贡献。用衰减的总内波探测硅表面金粒子的实验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Computation of surface-enhanced infrared absorption spectra of particles at a surface through the Finite Element Method
The finite element method (FEM) was used to solve the time-harmonic Maxwell equations to calculate full infrared (IR) absorption spectra of organic substances near particles adsorbed to a silicon/air interface mimicking a surface-enhanced infrared absorption spectroscopy (SEIRAS) experiment in internal reflection geometry. An enhancement factor attributed to the presence of the metal has been defined, and its dependence on the particle size and arrangement has been studied. The enhancement factor was found to increase with increasing particle size. Contributions of parts of the surface to the overall absorbance has been analyzed through the electric field patterns and by placing a probe material in the region to be analyzed. For isolated particles, the gap between particle and surface has a large contribution to the overall spectrum. Further, large contributions were found from the regions between touching particles. An experiment probing gold particles on a silicon surface using attenuated total internal...
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