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首页> 外文期刊>Macromolecules >Probing by time-resolved FTIR spectroscopy mass transport, molecular interactions, and conformational ordering in the system chloroform-syndiotactic polystyrene
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Probing by time-resolved FTIR spectroscopy mass transport, molecular interactions, and conformational ordering in the system chloroform-syndiotactic polystyrene

机译:通过时间分辨FTIR光谱在氯仿-间同立构聚苯乙烯体系中进行传质,分子相互作用和构象排序的探测

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The transport of chloroform in films of semicrystalline syndiotactic polystyrene (s-PS) in its nanoporous form (delta-form) has been investigated by gravimetric analysis and time-resolved FTIR spectroscopy. Experimental tests have been performed at 56 degreesC and at several vapor pressures ranging from 5 to 100 Torr. Sorption and desorption kinetics have been monitored with both techniques, and the dependence of diffusion coefficients with penetrant concentration was investigated, evidencing Fickian features typical of systems characterized by diffusivity increasing with concentration. Analysis of the vibrational spectrum of chloroform sorbed in the crystalline phase showed significant perturbations when compared to the spectrum of the isolated molecule or the molecule absorbed in amorphous s-PS. This perturbation has been attributed to host-guest molecular interactions whose strength was found to be relatively small. Conformational rearrangements of macromolecular chains in the amorphous phase were detected as a consequence of chloroform sorption. These rearrangements, which lead to an increase of the overall crystallinity degree, were quantified using the concept of critical sequence length (CSL). The kinetics of the conformational ordering process was found to parallel the sorption kinetics, and the associated increase of crystallinity was not reversible upon chloroform desorption. [References: 37]
机译:已通过重量分析和时间分辨FTIR光谱法研究了氯仿在其纳米孔形式(δ-形式)的半结晶间规聚苯乙烯(s-PS)薄膜中的传输。实验测试是在56摄氏度和5到100托的蒸汽压下进行的。两种技术均监测了吸附和解吸动力学,研究了扩散系数与渗透剂浓度的相关性,证明了系统的典型Fickian特征(扩散系数随浓度增加)。与分离的分子或无定形s-PS中吸收的分子的光谱相比,分析结晶相中吸收的氯仿的振动光谱显示出明显的扰动。这种扰动归因于发现其强度相对较小的宿主-客体分子相互作用。由于氯仿吸附,检测到非晶相中大分子链的构象重排。这些重排导致整体结晶度的增加,使用临界序列长度(CSL)的概念进行了量化。发现构象有序过程的动力学与吸附动力学平行,并且在氯仿解吸时结晶度的相关增加是不可逆的。 [参考:37]

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