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Moving-window two-dimensional correlation infrared spectroscopic study on the dissolution process of poly(vinyl alcohol)

机译:移动窗口二维相关红外光谱法研究聚乙烯醇的溶解过程

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摘要

In this paper, the dissolution process of fully hydrolyzed polyvinyl alcohol (PVA) was investigated by temperature-dependent Fourier transform infrared spectroscopy (FTIR) combined with moving-window two-dimensional (MW2D) correlation infrared spectroscopy (IR). The results show that the FTIR spectra of PVA in OH stretching and bending regions exceed the measuring range of the spectrometer because of the presence of abundant water. The OH stretching and bending peaks reveal that the water mainly diffuses into amorphous region below 45 A degrees C, and water molecules mainly diffuse into crystalline region above 45 A degrees C. The peak at 1141 cm(-1) has ever been thought as the indication of crystallinity of PVA in solid state, but in solution, the peak does not decrease with the dissolution of crystalline region and finally increases when PVA is dissolved completely. The hydrogen bonds between hydroxyl groups in PVA chains are broken by water molecules but abundant new hydrogen bonds between hydroxyl groups in PVA chains and water molecules are formed during the dissolving process. In the 2D correlation analysis of the FTIR spectra, only the correlation movements of hydroxyl groups, including stretching and bending mode, can be observed. The correlation range and intensity are larger than that of PVA in solid state because the dissolution is the interaction process of water molecules diffusing into PVA chains.
机译:本文通过温度依赖性傅立叶变换红外光谱(FTIR)结合移动窗口二维(MW2D)相关红外光谱(IR)研究了全水解聚乙烯醇(PVA)的溶解过程。结果表明,由于存在大量水,PVA在OH拉伸和弯曲区域的FTIR光谱超出了光谱仪的测量范围。 OH拉伸和弯曲峰表明,水主要扩散到45 A摄氏度以下的非晶区域,水分子主要扩散到45 A摄氏度以上的结晶区域。在1141 cm(-1)处的峰曾被认为是PVA固态结晶的指示,但在溶液中,该峰不会随结晶区的溶解而减少,而在PVA完全溶解时最终会增加。 PVA链中的羟基之间的氢键被水分子破坏,但是在溶解过程中,PVA链中的羟基和水分子之间形成了大量新的氢键。在FTIR光谱的2D相关分析中,只能观察到羟基的相关运动,包括拉伸和弯曲模式。由于溶解是水分子扩散到PVA链中的相互作用过程,因此相关范围和强度大于固态的PVA。

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