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Single and Multichain Association of Polystyrene in Solvents with Various Molecular Sizes

机译:不同分子大小的溶剂中聚苯乙烯的单链和多链缔合

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The association and aggregation of polymers in the semidilute solution regime during cooling from above to below the Theta temperature were investigated by the nonradiative energy transfer (NET) and rheological method. The molecular size of the solvent was found to affect the association and aggregation behaviors of the chains. When the normal small-sized solvent, for example decalin or cyclohexane is used, the polystyrene chains first associate among each other, and form aggregates of chains with strong interchain interpenetration at the end of cooling process. However, when the solvent with larger molecular size (also called middle-sized solvent), for example dioctyl phthalate (DOP) is used, polystyrene chains contract separately and form aggregates of collapsed globules at the end of cooling process. The interpenetration between chains for the polystyrene solid sample freeze-dried from different concentrations was detected by a new strategy using dipolar filter H-l solid-state NMR under fast magic angle spinning. We found that when the small-sized solvent was used, the extent of interpenetration in the polystyrene glasses basically kept constant with the concentration of the original solution and it increased suddenly near the critical overlapping concentration ([eta]c similar to 4). However, in the case of middle-sized solvent, even up to [eta]c = 10, the extent of the interpenetration kept in a very low level comparable to that from extremely dilute.([eta]c similar to 0.01) small-sized solvent solution. Such results help us to understand the behaviors of fast crystallization and relaxation dynamics of serials of polymer samples freeze-dried from middle-sized solvent solutions discovered in this laboratory.
机译:通过非辐射能量转移(NET)和流变学方法研究了在从Theta温度从上到下冷却期间,半稀释溶液中聚合物的缔合和聚集情况。发现溶剂的分子大小影响链的缔合和聚集行为。当使用普通的小尺寸溶剂,例如十氢化萘或环己烷时,聚苯乙烯链首先彼此缔合,并在冷却过程结束时形成具有强链间互穿性的链聚集体。但是,当使用分子尺寸较大的溶剂(也称为中等尺寸的溶剂)时,例如邻苯二甲酸二辛酯(DOP),聚苯乙烯链会分别收缩,并在冷却过程结束时形成塌陷的球状聚集体。通过一种新的策略,在快速魔角旋转下使用偶极滤光片H-1固态NMR,通过一种新的策略检测了从不同浓度冷冻干燥的聚苯乙烯固体样品的链之间的互穿。我们发现,当使用小尺寸溶剂时,聚苯乙烯玻璃中的互穿程度基本上与原始溶液的浓度保持恒定,并且在临界重叠浓度(ηc类似于4)附近突然增加。然而,在中等尺寸的溶剂的情况下,即使高达ηc = 10,互穿程度也保持在非常低的水平,可与极度稀释的程度相比。(ηc类似于0.01)小。大小的溶剂溶液。这些结果有助于我们了解从该实验室发现的中型溶剂溶液中冻干的一系列聚合物样品的快速结晶行为和弛豫动力学。

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