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Conformation rearrangement and molecular dynamics of poly(3-hydroxybutyrate) during the melt-crystallization process investigated by infrared and two-dimensional infrared correlation spectroscopy

机译:红外和二维红外相关光谱法研究聚3-羟基丁酸酯在熔体结晶过程中的构象重排和分子动力学

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摘要

Time-dependent infrared (IR) spectral variations during isothermal melt-crystallization process of poly(3-hydroxybutyrate) (PHB) have been analyzed for different wavenumber regions (C-H, C=O, C-O-C, and C-C stretching vibration regions) by difference spectra, second derivatives, and two-dimensional (2D) correlation analysis, and the bands characteristic of crystalline and amorphous parts are identified in each region. By the 2D correlation analysis, it has been found that the intensity changes in the 1731 cm(-1) band, which may be due to the intermediate state, and in the 1722 cm(-1) band due to the crystal packing occur out of phase with each other, whereas those in the two amorphous C=O stretching bands (1747 and 1739 cm(-1)) ascribed to the different conformations of the main chain are synchronous, which represents a cooperative conformational rearrangement for the C=O groups in the amorphous state during the crystallization process. Meanwhile, a distinct delay between the intensity change rates of bands at 1184 and 825 cm(-1) indicates that the adjustment of C-O-C backbone occurs faster than that of C-C backbone in PHB. This result has also been confirmed by investigating the 2D correlation spectra of PHB in various spectral regions. On the basis of these observations, a physical picture on the molecular evolution of PHB during the melt-crystallization process has been derived.
机译:通过差异光谱分析了聚(3-羟基丁酸酯)(PHB)的等温熔融结晶过程中随时间变化的红外(IR)光谱变化,用于不同波数区域(CH,C = O,COC和CC拉伸振动区域) ,二阶导数和二维(2D)相关分析,以及在每个区域中识别出晶体和非晶部分的能带特征。通过二维相关分析,发现强度变化在1731 cm(-1)带中可能是由于中间状态,而强度变化在1722 cm(-1)带中由于晶体堆积而出现的相互之间具有相同的相位关系,而归属于主链不同构象的两个无定形C = O伸缩带(1747和1739 cm(-1))中的谱带是同步的,这表示C = O的协作构象重排在结晶过程中基团处于非晶态。同时,在1184和825 cm(-1)处的强度变化率之间存在明显的延迟,这表明在PHB中C-O-C主链的调整发生得比C-C主链的调整更快。通过研究各种光谱区域中PHB的2D相关光谱,也证实了这一结果。基于这些观察,得出了在熔融结晶过程中PHB分子演化的物理图景。

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