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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Improved accuracy for Raman spectroscopic determination of polyethylene property by optimization of measurement temperature and elucidation of its origin by multiple perturbation two-dimensional correlation spectroscopy
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Improved accuracy for Raman spectroscopic determination of polyethylene property by optimization of measurement temperature and elucidation of its origin by multiple perturbation two-dimensional correlation spectroscopy

机译:通过优化测量温度并通过多重扰动二维相关光谱法阐明其起源,提高了拉曼光谱法测定聚乙烯性能的准确性

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摘要

A novel strategy is demonstrated to improve the accuracy for determination of polyethylene (PE) density using Raman spectroscopy by optimizing the temperature of sample measurement. Spectral features associated with the conformation change of the polymer induced by temperature may provide valuable information to quantify important polymer properties such as density. To evaluate possible existence of an optimal temperature providing improved quantitative accuracy, Raman spectra of PE pellets with different densities were collected at eight different temperatures from 30 to 100 [degree]C at 10 [degree]C intervals. Using the spectral datasets collected at each temperature, partial least squares (PLS) models were developed using the reference PE density values determined by a standard density gradient method at 23 [degree]C. Interestingly, the most accurate determination of density was realized at 70 [degree]C. Multiple perturbation two-dimensional (MP2D) correlation analysis and differential scanning calorimetry (DSC) were used to examine the origin of improved accuracy at 70 [degree]C. From these analyses, the pre-melt behavior of the PE samples was identified below their melting temperatures. Structural variations induced at the pre-melt stages enhance Raman spectral selectivity among the samples, thereby providing more accurate determination of PE density. The MP2D correlation analysis revealed the unforeseen thermal behavior of PE samples and successfully explained the improved accuracy at 70 [degree]C.
机译:通过优化样品测量温度,可以证明一种新颖的策略可以提高使用拉曼光谱法测定聚乙烯(PE)密度的准确性。与温度引起的聚合物构象变化有关的光谱特征可以提供有价值的信息,以量化重要的聚合物性能,例如密度。为了评估提供改进的定量精度的最佳温度的可能存在,在从30到100℃的八个不同温度下以10℃的间隔收集具有不同密度的PE颗粒的拉曼光谱。使用在每个温度下收集的光谱数据集,使用在23℃下通过标准密度梯度方法确定的参考PE密度值来开发偏最小二乘(PLS)模型。有趣的是,密度的最精确测定是在70℃进行的。多重扰动二维(MP2D)相关分析和差示扫描量热法(DSC)用于检查70℃时精度提高的原因。从这些分析中,可以确定PE样品的熔融前温度低于熔融温度。在预熔融阶段引起的结构变化会增强样品之间的拉曼光谱选择性,从而提供更准确的PE密度测定。 MP2D相关性分析揭示了PE样品无法预料的热行为,并成功解释了70℃时精度的提高。

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