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Near-Infrared Scattering Effects of Mesoporous TiO_2 Analyzed by Optical Coherence Tomography

机译:光学相干断层扫描分析中孔TiO_2的近红外散射效果

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Optical properties of mesoporous TiO_2 scatters with average diameters of 20 nm, 150 nm, 300 nm, and 500 nm are measured by optical coherence tomography system at the wavelength of 853 nm. The scattering coefficient can be estimated by utilizing the extend Huygens Fresnel theory with consideration of single and multiple scattering effects, and the g factors are calculated based on the Mie scattering model. After fitting algorithm, by increasing the sizes of mesoporous TiO_2 scatters from 20, 150, 300, to 500 nm, the scattering coefficient could also be extracted as from 13.5±0.6, 16.5±0.6, to 20.2±0.6 mm~(-1), and then decreased to 18.5±0.6 mm~(-1), which are accompanied with the enhancement of multiple-scattering contribution from 5%, 10%, to 40%, and then decreased to 20%, respectively.
机译:通过光学相干断层扫描系统在853nm波长下测量具有20nm,150nm,300nm和500nm的平均直径的介孔TiO_2散射的光学性质。通过考虑单一和多次散射效应,可以通过利用惠尼菲涅耳理论延伸来估计散射系数,并且基于MIE散射模型计算G因子。拟合算法后,通过增加20,150,300,300至500nm的中孔TiO_2散射的尺寸,也可以将散射系数提取为13.5±0.6,16.5±16.5±0.6至20.2±0.6mm〜(-1)然后减少至18.5±0.6mm〜(-1),伴随着增强从5%,10%,40%的多散射贡献,然后分别降至20%。

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