Kondo Tetsuo, Koschella Andreas, Heublein Brigitte, Klemm Dieter, Heinze Thomas
Bio-Architecture Center and Graduate School of Bioresource and Bioenvironmental Sciences, Kyushu University, Higashi-ku, Fukuoka 812-8581, Japan.
Carbohydr Res. 2008 Oct 13;343(15):2600-4. doi: 10.1016/j.carres.2008.06.003. Epub 2008 Jun 8.
The hydrogen bond systems of cellulose and its derivatives are one of the most important factors regarding their physical- and chemical properties such as solubility, crystallinity, gel formation, and resistance to enzymatic degradation. In this paper, it was attempted to clarify the intra- and intermolecular hydrogen bond formation in regioselectively functionalized 3-mono-O-methyl cellulose (3MC). First, the 3MC was synthesized and the cast film thereof was characterized in comparison to 2,3-di-O-methyl cellulose, 6-mono-O-methyl cellulose, and 2,3,6-tri-O-methyl cellulose by means of wide angle X-ray diffraction (WAXD) and (13)C cross polarization/magic angle spinning NMR spectroscopy. Second, the hydrogen bonds in the 3MC film were analyzed by means of FTIR spectroscopy in combination with a curve fitting method. After deconvolution, the resulting two main bands (Fig. 3) indicated that instead of intramolecular hydrogen bonds between position OH-3 and O-5 another intramolecular hydrogen bond between OH-2 and OH-6 may exist. The large deconvoluted band at 3340cm(-1) referred to strong interchain hydrogen bonds involving the hydroxyl groups at C-6. The crystallinity of 54% calculated from the WAXD supports also the dependency of the usually observed crystallization in cellulose of the hydroxyl groups at C-6 to engage in interchain hydrogen bonding.
纤维素及其衍生物的氢键体系是影响其物理和化学性质(如溶解性、结晶度、凝胶形成以及抗酶解性)的最重要因素之一。本文旨在阐明区域选择性功能化的3-单-O-甲基纤维素(3MC)中分子内和分子间氢键的形成。首先,合成了3MC,并通过广角X射线衍射(WAXD)和(13)C交叉极化/魔角旋转核磁共振光谱,将其流延膜与2,3-二-O-甲基纤维素、6-单-O-甲基纤维素和2,3,6-三-O-甲基纤维素进行了表征比较。其次,结合曲线拟合方法,通过傅里叶变换红外光谱(FTIR)对3MC膜中的氢键进行了分析。去卷积后,得到的两个主要谱带(图3)表明,OH-3和O-5之间可能不存在分子内氢键,而OH-2和OH-6之间可能存在另一种分子内氢键。3340cm(-1)处较大的去卷积谱带表明涉及C-6位羟基的强链间氢键。由WAXD计算得出的54%的结晶度也支持了纤维素中通常观察到的结晶对C-6位羟基参与链间氢键形成的依赖性。