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Gel permeation and thin‐layer chromatographic characterization and solution properties of butadiene and styrene homopolymers and copolymers

机译:丁二烯和苯乙烯均聚物和共聚物的凝胶渗透和薄层色谱表征和溶液性质

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AbstractGel permeation chromatographic (GPC) and thin‐layer chromatographic (TLC) studies of polystyrene, polybutadienes (BR), and their copolymers (SBR) have been carried out. GPC primarily separates them on the basis of molecular size, and TLC, on the basis of composition. Methods of obtaining absolute molecular weight distributions for BR and SBR based upon variations of the Strasbourg Universal Calibration procedure are described. In particular, η–M relationships in both the GPC solvent (THF) and in a second solvent (toluene) were used; in addition, results of statistical mechanical calculations fordocumentclass{article}pagestyle{empty}begin{document}$overline {s^2 }$end{document}(based on the assumption of negligible steric hindrance and freely rotating bonds) were applied. An experimental comparison of these methods was carried out, and use of the η–M relationships for both solvents was found to give satisfactory results. The predictions of the statistical theory were too low. A detailed study of polymer–solvent–gel interaction in the GPC unit was made through investigation of ternary phase equilibrium in the (polystyrene)–THF–(polymer) system. The polymers studied included BR and SBR with varying styrene contents. Experimental techniques for TLC separations of BR, SBR, and polystyrene according to the compositio
机译:摘要对聚苯乙烯、聚丁二烯及其共聚物(SBR)进行了凝胶渗透色谱(GPC)和薄层色谱(TLC)研究。GPC 主要根据分子大小来分离它们,而 TLC 则根据组成来分离它们。描述了基于斯特拉斯堡通用校准程序的变化获得BR和SBR绝对分子量分布的方法。特别是,GPC溶剂(THF)和第二溶剂(甲苯)中的[η]-M关系均被使用;此外,还应用了DocumentClass{article}PageStyle{empty}Begin{Document}$overline {S^2 }$end{Document}(基于可忽略不计的空间位阻和自由旋转键的假设)的统计力学计算结果。对这些方法进行了实验比较,发现两种溶剂的[η]–M关系都得到了令人满意的结果。统计理论的预测值太低了。通过研究(聚苯乙烯)–THF–(聚合物)体系中的三元相平衡,对GPC装置中的聚合物-溶剂-凝胶相互作用进行了详细研究。研究的聚合物包括苯乙烯含量不同的BR和SBR。根据合成法分离BR、SBR和聚苯乙烯的TLC实验技术

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