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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Time-Resolved Fourier Transform infrared Spectroscopy, Gravimetry, and Thermodynamic Modeling for a Molecular Level Description of Water Sorption in Poly(ε-caprolactone)
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Time-Resolved Fourier Transform infrared Spectroscopy, Gravimetry, and Thermodynamic Modeling for a Molecular Level Description of Water Sorption in Poly(ε-caprolactone)

机译:时间分辨傅立叶变换红外光谱,重量分析和热力学模型,对聚(ε-己内酯)中的吸水率进行分子水平描述

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摘要

Sorption of water in poly(ε-caprolactone) (PCL), with specific focus on the hydrogen-bonding interactions, has been analyzed by combining ab initio calculations, macroscopic thermodynamics modeling, and relevant features emerging from spectroscopic and gravimetric measurements. Fourier transform infrared (FTIR) data, analyzed by difference spectroscopy, two-dimensional correlation spectroscopy, and least-squares curve-fitting analysis associated with gravimetric determination of water sorption isotherm provided information on the system's behavior and on the molecular interactions established between the polymer and the penetrant. A consistent physical picture emerged pointing to the presence of two spectroscopically discernible water species (first-shell and second-shell layers) that have been quantified. Water molecules are present in the form of dimers within the polymer equilibrated with water vapor up to a relative humidity of 0.65. At higher humidities, clustering of water sorbed molecules starts to take place. The multicomponent v(OH) band representative of absorbed water has been interpreted with the aid of ab initio calculations performed on suitably chosen model systems. The outcomes of spectroscopic analyses were interpreted at a macroscopic level by modeling the thermodynamics of water sorption in PCL based on a nonrandom compressible lattice theory accounting for hydrogen-bonding (HB) interactions. Starting from the fitting of the gravimetric sorption isotherm, the model provided quantitative estimates for the amount of self-and cross-HBs which compare favorably with the FTIR results.
机译:结合了从头算,宏观热力学建模以及分光光度法和重量法测量得出的相关特征,对聚(ε-己内酯)(PCL)中的水吸附进行了专门研究,重点研究了氢键相互作用。傅立叶变换红外(FTIR)数据,通过差示光谱法,二维相关光谱法和最小二乘曲线拟合分析与重量法测定吸水等温线相关联,提供了有关系统行为和聚合物之间建立的分子相互作用的信息和渗透剂。出现了一致的物理图像,表明存在已被量化的在光谱上可辨别的两种水物种(第一层和第二层)。水分子以二聚体形式存在于与水蒸气平衡的聚合物中,相对湿度为0.65。在较高的湿度下,水吸附分子开始聚集。带代表的吸收的水的多组分V(OH)已被解释以ab的辅助initio计算上执行适当选择模型系统。通过基于考虑氢键(HB)相互作用的非随机可压缩晶格理论对PCL中水吸附的热力学进行建模,可以在宏观层面上解释光谱分析的结果。该模型从重量吸收等温线的拟合开始,提供了自身和交叉HBs数量的定量估计,与FTIR结果相比具有优势。

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