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用拉曼光谱法估算各向同性全同立构聚丙烯的结晶度。

Estimation of crystallinity in isotropic isotactic polypropylene with Raman spectroscopy.

作者信息

Minogianni Chrysa, Gatos Konstantinos G, Galiotis Costas

机构信息

Institute of Chemical Engineering and High Temperature Chemical Processes, Foundation for Research and Technology-Hellas (ICEHT-FORTH), P.O. Box 1414, Patras 26504, Greece.

出版信息

Appl Spectrosc. 2005 Sep;59(9):1141-7. doi: 10.1366/0003702055012681.

Abstract

The Raman spectrum of isotactic polypropylene (iPP) has been found to exhibit vibrational peaks in the region of 750 to 880 cm(-1) that are sensitive to the degree of crystallinity. These features are broadly assigned to various modes of methyl group rocking, rho(CH2), and there have been various attempts to assess crystallinity based on the integrated intensities of these bands. Various vibrational analyses performed in the past in combination with experimental studies have concluded that the presence of crystalline order with trans-gauche conformation gives rise to a peak at 809 cm(-1), which is assigned to a rho(CH2) mode coupled with the skeletal stretching mode. However, the presence of additional peaks at 830 cm(-1), 841 cm(-1), and 854 cm(-1), within the same envelope, have been the subject of controversy. In this work isotropic films of iPP derived from the same precursor of identical tacticity have been subjected to various degrees of annealing and the integrated intensities of the Raman bands were measured. The results showed that true 3d crystallinity in isotropic iPP can only be expressed by the 809 cm(-1) band whereas the band at 841 cm(-1) corresponds to an uncoupled rho(CH2) fundamental mode and thus is a measure of the amorphous content. The less intense satellite bands at 830 cm(-1) and 854 cm(-1) of solid iPP cannot be distinguished from the 841 cm(-1) band in the melt and are generally considered as intermediate phases possibly related to non-crystalline components with 3(1)-helical conformations. Independent differential scanning calorimetry (DSC) crystallinity measurements were in broad agreement with the Raman measurements based on the normalized intensity of the 809 cm(-1) Raman band. By comparing the Raman with the DSC data a new value for the theoretical heat of fusion for the 100% crystalline iPP has been proposed.

摘要

等规聚丙烯(iPP)的拉曼光谱在750至880 cm⁻¹区域呈现出对结晶度敏感的振动峰。这些特征大致归因于甲基摇摆、ρ(CH₂)的各种模式,并且已经有各种基于这些谱带积分强度来评估结晶度的尝试。过去结合实验研究进行的各种振动分析得出结论,具有反式-旁式构象的结晶有序结构的存在会在809 cm⁻¹处产生一个峰,该峰归因于与骨架拉伸模式耦合的ρ(CH₂)模式。然而,在同一范围内830 cm⁻¹、841 cm⁻¹和854 cm⁻¹处额外峰的存在一直存在争议。在这项工作中,由相同立构规整度的相同前驱体制备的iPP各向同性薄膜经过了不同程度的退火处理,并测量了拉曼谱带的积分强度。结果表明,各向同性iPP中的真实三维结晶度只能由809 cm⁻¹谱带表示,而841 cm⁻¹处的谱带对应于未耦合的ρ(CH₂)基模,因此是无定形含量的一种度量。固态iPP在830 cm⁻¹和854 cm⁻¹处强度较低的卫星谱带在熔体中无法与841 cm⁻¹谱带区分开来,通常被认为是可能与具有3(1)-螺旋构象的非晶态组分相关的中间相。独立的差示扫描量热法(DSC)结晶度测量结果与基于809 cm⁻¹拉曼谱带归一化强度的拉曼测量结果大致一致。通过比较拉曼数据和DSC数据,提出了100%结晶iPP的理论熔化热的新值。

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