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Highly efficient and selective pressure-assisted photon-induced polymerization of styrene

机译:高效,选择性的压力辅助光子诱导的苯乙烯聚合

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The polymerization process of condensed styrene to produce polystyrene as an industrially important polymeric material was investigated using a novel approach by combining external compression with ultraviolet radiation. The reaction evolution was monitored as a function of time and the reaction products were characterized by in situ Fourier transform infrared spectroscopy. By optimizing the loading pressures, we observed highly efficient and selective production of polystyrene of different tacticities. Specifically, at relatively low loading pressures, infrared spectra suggest that styrene monomers transform to amorphous atactic polystyrene (APS) with minor crystalline isotactic polystyrene. In contrast, APS was found to be the sole product when polymerization occurs at relatively higher loading pressures. The time-dependent reaction profiles allow the examination of the polymerization kinetics by analyzing the rate constant and activation volume as a function of pressure. As a result, an optimized pressure condition, which allows a barrierless reaction to proceed, was identified and attributed to the very desirable reaction yield and kinetics. Finally, the photoinitiated reaction mechanism and the growth geometry of the polymer chains were investigated from the energy diagram of styrene and by the topology analysis of the crystal styrene. This study shows strong promise to produce functional polymeric materials in a highly efficient and controlled manner. Published by AIP Publishing.
机译:通过将外部压缩与紫外线辐射相结合的新颖方法,研究了缩聚苯乙烯的聚合过程,以生产作为工业上重要的聚合材料的聚苯乙烯。监测反应随时间的变化,并通过原位傅立叶变换红外光谱对反应产物进行表征。通过优化加载压力,我们观察到了高效,选择性生产不同立构规整度的聚苯乙烯。具体而言,在相对较低的加载压力下,红外光谱表明苯乙烯单体可与少量结晶等规聚苯乙烯转变为无定形无规聚苯乙烯(APS)。相反,发现当在相对较高的加载压力下发生聚合时,APS是唯一的产物。与时间有关的反应曲线通过分析速率常数和活化体积随压力的变化,可以检查聚合动力学。结果,确定了允许无障碍反应进行的最佳压力条件,并将其归因于非常理想的反应产率和动力学。最后,从苯乙烯的能谱图和晶体苯乙烯的拓扑分析,研究了光引发的反应机理和聚合物链的生长几何。这项研究显示出以高效和可控制的方式生产功能性聚合物材料的强大前景。由AIP Publishing发布。

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