Watanabe Akihiko, Morita Shigeaki, Ozaki Yukihiro
Department of Chemistry and Research Center for Near Infrared Spectroscopy, School of Science and Technology, Kwansei Gakuin University, 2-1 Gakuen, Sanda 669-1337, Japan.
Appl Spectrosc. 2006 Jun;60(6):611-8. doi: 10.1366/000370206777670549.
Temperature-dependent structural changes in hydrogen bonds (H-bonds) in microcrystalline cellulose (MCC) were investigated by infrared (IR) and near-infrared (NIR) spectroscopy. The O-H stretching fundamentals and their first overtone bands were employed to explore the structural changes. In order to analyze the overlapping OH bands due to various H-bonds, perturbation-correlation moving-window two-dimensional (PCMW2D) correlation spectroscopy was applied to the IR and NIR data. Typical spectral variation temperatures were visualized by the PCMW2D correlation analysis. Structural changes in the strong H-bonds in MCC gradually occur in the temperature region of 25-130 degrees C, and they become greater above 130 degrees C. Both OH groups with H-bonds of intermediate strength and very weak H-bonds arise from the structural change of strong H-bonds in the temperature region of 40-90 degrees C, whereas the appearance of the latter OH groups with very weak H-bonds gradually becomes dominant above 90 degrees C. It is revealed from the present study that the glass transition at 184 degrees C induces the changes in the H-bonds in the Ibeta and the O3-H3...O5 intrachain H-bonds. Band assignments for the O-H stretching first overtone vibration region are proposed based on the results of the PCMW2D correlation analyses.
通过红外(IR)光谱和近红外(NIR)光谱研究了微晶纤维素(MCC)中氢键(H键)的温度依赖性结构变化。利用O-H伸缩基频及其第一泛音带来探究结构变化。为了分析由于各种H键导致的OH谱带重叠,将扰动相关移动窗口二维(PCMW2D)相关光谱应用于IR和NIR数据。通过PCMW2D相关分析可视化了典型的光谱变化温度。MCC中强H键的结构变化在25-130℃的温度范围内逐渐发生,在130℃以上变得更大。具有中等强度H键的OH基团和非常弱的H键均在40-90℃的温度范围内由强H键的结构变化产生,而具有非常弱H键的后一种OH基团的出现在90℃以上逐渐占主导地位。本研究表明℃时的玻璃化转变会引起Iβ中的H键和O3-H3...O5链内H键的变化。基于PCMW2D相关分析的结果,提出了O-H伸缩第一泛音振动区域的谱带归属。