首页> 外文期刊>The Journal of Supercritical Fluids >Attempt to explain the changes in solvation of polystyrene in supercritical CO_2/ethanol mixtures using infrared and Raman spectroscopy
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Attempt to explain the changes in solvation of polystyrene in supercritical CO_2/ethanol mixtures using infrared and Raman spectroscopy

机译:尝试使用红外和拉曼光谱解释超临界CO_2 /乙醇混合物中聚苯乙烯的溶剂化变化

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摘要

The polystyrene/ /CO2/ethanol system has been investigated in the supercritical domain using infrared abso'rption (FTIR) and Raman scattering spectroscopies. The pressure and temperature were fixed in the range 20-35 MPa at 423 K for CO2/ethanol mixtures with proportion in weight from (70/30) to {58/42). These conditions are those used in our previous study concerning the fractionation of this macromolecule. A surprising finding reported before was that the CO2/ethanol mixture made of two non-solvents of PS at ambient conditions is able to dissolve PS chains under high temperature and pressure. In the present article, this question will be addressed at a microscopic level from a discussion of the intermolecular interactions between the polymer and the medium and between the CO2 and ethanol components provided by the analysis of the spectra.
机译:使用红外吸收(FTIR)和拉曼散射光谱学在超临界域中研究了聚苯乙烯// CO2 /乙醇系统。对于重量比为(70/30)至{58/42)的CO2 /乙醇混合物,在423 K下将压力和温度固定在20-35 MPa的范围内。这些条件是我们先前有关该大分子分级分离研究的条件。之前报道的一个令人惊讶的发现是,在环境条件下,由两种非PS溶剂制得的CO2 /乙醇混合物能够溶解PS链在高温和高压下。在本文中,将从对光谱分析提供的聚合物与介质之间以及CO2和乙醇组分之间的分子间相互作用的讨论中,从微观角度解决这个问题。

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