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Simultaneous Determination of the Micro-, Meso-, and Macropore Size Fractions of Porous Polymers by a Combined Use of Fourier Transform Near-Infrared Diffuse Reflection Spectroscopy and Multivariate Techniques

机译:傅立叶变换近红外漫反射光谱法和多元技术的组合同时测定多孔聚合物的微孔,中孔和大孔

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Fourier transform near-infrared (FT-NIR) diffuse reflection spectroscopy was used in combination with principal component analysis and partial least-squares regression to simultaneously determine the physical and the chemical parameters of a porous poly(p-methylstyrene-co-1,2-bis(p-vinylphenyl)ethane) (MS/BVPE) monolithic polymer. Chemical variations during the synthesis of the polymer material can alter the pore volume and pore area distributions within the polymer scaffold. Furthermore, mid-infrared and near-infrared (NIR) spectroscopic chemical imaging was implemented as a tool to assess the uniformity of the samples. The presented study summarizes the comparative results derived from the spectral FT-NIR data combined with chemometric techniques. The relevance of the interrelation of physical and chemical parameters is highlighted whereas the amount of MS/BVPE (percent, v/v) and the quantity (percent) of micropores (diameter, d < 6 nm), mesopores (6 nm < d < 50 nm), and macropores (50 nm < d < 200 nm) could be determined with one measurement. For comparison of the quantitative data, the standard error of prediction (SEP) was used. The SEP for determining the MS/BVPE amount in the samples showed 0.35percent, for pore volume quantiles 1.42-8.44percent, and for pore area quantiles 0.38-1.45percent, respectively. The implication of these results is that FTNIR spectroscopy is a suitable technique for the screening of samples with varying physicochemical properties and to quantitatively determine the parameters simultaneously within a few seconds.
机译:傅立叶变换近红外(FT-NIR)漫反射光谱与主成分分析和偏最小二乘回归结合使用,可同时测定多孔聚对甲基苯乙烯-co-1,2的物理和化学参数-双(对-乙烯基苯基)乙烷)(MS / BVPE)整体聚合物。聚合物材料合成过程中的化学变化会改变聚合物支架内的孔体积和孔面积分布。此外,采用中红外和近红外(NIR)光谱化学成像作为评估样品均匀性的工具。本研究总结了从光谱FT-NIR数据结合化学计量学得出的比较结果。突出了物理和化学参数之间相互关系的相关性,而MS / BVPE的量(百分比,v / v)和微孔(直径,d <6 nm),中孔(6 nm

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