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Two-Dimensional Raman Correlation Spectroscopy Study of an Emulsion Copolymerization Reaction Process

机译:乳液共聚反应过程的二维拉曼相关光谱研究

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The emulsion copolymerization of styrene and 1,3-butadiene using an oligomeric nonionic surfactant as an emulsifier to make a styrene-butadiene rubber (SBR) copolymer latex was monitored by real-time in situ Raman spectroscopy. Time-resolved Raman spectra collected during the early stage of the polymerization reaction were subjected to a series of data analysis techniques, including two-dimensional (2D) correlation spectroscopy, multivariate self-modeling curve resolution (SMCR), and kernel analysis, to elucidate the fine details of the complex reaction process. Generalized 2D correlation analysis of time-resolved Raman spectra readily identified the characteristic Raman scattering bands for the monomers and copolymer. Cross-peaks appearing in 2D Raman correlation spectra showed that the decrease in the spectral intensity of Raman bands assignable to 1,3-butadiene occurs before the band intensity changes for styrene or SBR copolymer. The positions of asynchronous cross-peaks were used to identify a spectral region with the most distinct pattern of intensity variations, which in turn could be used as the starting point for the alternating least squares iteration of the SMCR analysis. SMCR analysis of the time-resolved Raman spectra generated a set of estimated pure component spectra and concentration profiles of styrene, 1,3-butadiene, and SBR copolymer without requiring independently measured calibration data. The estimated concentration profiles of monomers and copolymer indicated that the reaction of 1,3-butadiene started before the consumption of styrene and production of SBR copolymer. Kernel analysis of the estimated concentration profiles provided a succinct measure of the similarity and dissimilarity of the concentration changes of monomers and copolymer.
机译:通过实时原位拉曼光谱法监测使用低聚非离子表面活性剂作为乳化剂的苯乙烯和1,3-丁二烯的乳液共聚,以制备苯乙烯-丁二烯橡胶(SBR)共聚物胶乳。对在聚合反应早期收集的时间分辨拉曼光谱进行了一系列数据分析技术,包括二维(2D)相关光谱法,多元自建模曲线分辨率(SMCR)和核分析,以进行阐明复杂反应过程的细节。时间分辨拉曼光谱的广义二维相关分析很容易确定单体和共聚物的特征拉曼散射带。在2D拉曼相关光谱中出现的交叉峰表明,可分配给1,3-丁二烯的拉曼谱带的光谱强度下降发生在苯乙烯或SBR共聚物的谱带强度变化之前。异步交叉峰的位置用于识别强度变化最明显的光谱区域,而该光谱区域又可以用作SMCR分析的交替最小二乘迭代的起点。时间分辨拉曼光谱的SMCR分析生成了一组估计的纯组分光谱和苯乙烯,1,3-丁二烯和SBR共聚物的浓度曲线,而无需独立测量校准数据。估计的单体和共聚物的浓度曲线表明,1,3-丁二烯的反应在苯乙烯消耗和SBR共聚物生产之前就开始了。估计浓度曲线的内核分析提供了单体和共聚物浓度变化的相似性和不相似性的简洁度量。

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