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首页> 外文期刊>Macromolecular symposia >Simultaneous Time-Resolved SAXS and WAXS Study on Guest Exchange Process of Syndiotactic Polystyrene with Aromatic Compounds: Size and Shape Effects of Target Molecules
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Simultaneous Time-Resolved SAXS and WAXS Study on Guest Exchange Process of Syndiotactic Polystyrene with Aromatic Compounds: Size and Shape Effects of Target Molecules

机译:间规聚苯乙烯与芳香族化合物的客体交换过程的同时时间分辨SAXS和WAXS研究:目标分子的尺寸和形状效应

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摘要

One of the important characteristics of syndiotactic polystyrene (sPS) is that it forms cocrystals with a variety of chemical compounds. The guest exchange procedure is an effective method to introduce diverse chemical compounds into the crystalline region of sPS cocrystals; it enables sPS to form cocrystals even with chemical compounds that are difficult to incorporate into the crystalline region by usual crystallization. The original guest in the sPS cocrystal is replaced by another chemical when exposed to a vapor, a liquid or a solution of the new guest. In order to study the characteristics of the guest exchange process initiated by exposure to a liquid, simultaneous time resolved SAXS and WAXS measurements were carried out to follow the structure changes during the guest exchange process. A series of aromatic compounds, benzene, toluene, xylene (o- and p-isomers) and mesitylene were employed as new guests. The simultaneous measurements enabled gathering information concerning both the higher order structure and the cocrystal structure. The exchange from the old guest to the new guest was also followed by FTIR spectroscopy. It is clarified that not only the size of the new guest molecules but also the molecular shape has a significant influence on the guest exchange behavior. It is also suggested that on the liquid-phase guest exchange an expansion of the lamellar period somewhat precedes the guest exchange in the crystalline lamellae.
机译:间规聚苯乙烯(sPS)的重要特征之一是它与多种化合物形成共晶。客体交换过程是将各种化合物引入sPS共晶体结晶区域的有效方法。它使sPS甚至可以与通常通过结晶很难结合到晶体区域的化合物形成共晶体。当sPS共结晶中的原始客体暴露于新客体的蒸气,液体或溶液中时,会被另一种化学物质替代。为了研究由暴露于液体引发的来宾交换过程的特征,同时进行了时间分辨的SAXS和WAXS测量,以跟踪来宾交换过程中的结构变化。一系列芳香族化合物,苯,甲苯,二甲苯(邻和对异构体)和均三甲苯被用作新的客体。同时测量使得能够收集有关高阶结构和共晶结构的信息。从旧客人到新客人的交换也随后进行了FTIR光谱分析。需要说明的是,不仅新的客体分子的大小而且分子的形状对客体交换行为都有重要的影响。还建议在液相客流交换中,层状周期的扩展在结晶薄片中的客流交换之前。

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