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A Study of Electric Field Standing Waves on Reflection Microspectroscopy of Polystyrene Particles

机译:聚苯乙烯粒子反射光谱的电场驻波研究

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We have been investigating the mid-infrared (MIR) reflection spectrum of microparticles on mirrored substrates. Gold-coated porous alumina filters were used as a substrate to layer the particles and provide consistent reflection spectra. Polystyrene spheres with measured diameters of 0.42 μm were studied using Fourier transform infrared (FT-IR) reflection microspectroscopy, and spectra are shown for coverages in the range 0.5–6 monolayers (ML). Results show that absorption has a nonlinear, stairstep-like dependence on particle coverage and a wavelength dependence that can be explained by electric field standing waves (EFSW) caused by the mirrored substrate. The same effect is found to cause progressive weakening of the observed spectra as a function of increasing wavelength in sub-monolayer coverage measurements. Scattering effects in the spectra are consistent with surface scattering at the antinodes of the EFSW. These observations provide explanations for differences seen between optical properties of particles calculated using the specular-reflection method versus those calculated using traditional aerosol methods. A simple multilayer method for estimating particle absorption coefficients is demonstrated that compares well with values reported using ellipsometry for bulk polystyrene. Another simple method based on submonolayer coverage spectra provides spectra suitable for classification analysis but is only semi-quantitative at determining absorption coefficients.
机译:我们一直在研究镜面基板上微粒的中红外(MIR)反射光谱。镀金的多孔氧化铝滤光片用作基材,使颗粒分层并提供一致的反射光谱。使用傅立叶变换红外(FT-IR)反射显微光谱仪研究了直径为0.42μm的聚苯乙烯球,并显示了光谱范围为0.5–6单层(ML)。结果表明,吸收对粒子的覆盖具有非线性,阶梯状的依赖性,而波长的依赖性可以由镜面基板引起的电场驻波(EFSW)来解释。在亚单层覆盖率测量中,发现相同的效果会导致观察到的光谱逐渐减弱,这是波长增加的函数。光谱中的散射效应与EFSW的波腹处的表面散射一致。这些观察结果解释了使用镜面反射法计算的粒子与使用传统气溶胶法计算的粒子的光学性能之间的差异。证明了一种估算颗粒吸收系数的简单多层方法,该方法与使用椭圆偏振法报告的本体聚苯乙烯的值进行了很好的比较。另一种基于亚单层覆盖光谱的简单方法提供了适用于分类分析的光谱,但在确定吸收系数时仅是半定量的。

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    《Applied Spectroscopy》 |2009年第11期|1293-1302|共10页
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