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几丁质正酰化物的双介晶组合及其侧链的快速焓松弛。

Dual mesomorphic assemblage of chitin normal acylates and rapid enthalpy relaxation of their side chains.

作者信息

Teramoto Yoshikuni, Miyata Tomoya, Nishio Yoshiyuki

机构信息

Division of Forest and Biomaterials Science, Graduate School of Agriculture, Kyoto University, Sakyo-ku, Kyoto 606-8502, Japan.

出版信息

Biomacromolecules. 2006 Jan;7(1):190-8. doi: 10.1021/bm050580y.

Abstract

Chitin derivatives having normalacyl groups (C(n)H(2n-1)O-; n = 4-20) were synthesized with pyridine, p-toluenesulfonyl chloride, and normal alkanoic acid in an N,N-dimethylacetamide-lithium chloride homogeneous system. The products (C(n)-ACs; degree of acyl substitution, DS = 1.7-1.9) showed an n-dependent thermal transition behavior: no evident transition (n = 4-10), a glass transition (n = 12 and 14), and a pseudo-first-order phase transition (n = 16-20), the latter two occurring usually below room temperature when examined by differential scanning calorimetry. Wide-angle X-ray diffractometry (WAXD) at 20 degrees C displayed a sharp diffraction peak (2theta = 2 degrees -7 degrees ) and a diffuse halo (2theta approximately 20 degrees ) for the respective C(n)-ACs. The former d-spacing (1.5-3.6 nm) increased with an increase in n to yield two stages of mutually different increasing rates, which reflects a systematic n-dependence of the period of a layered structure of the main chains. The molecular assembly of C(n)-ACs exhibited "dual mesomorphy"; nematic ordering for the semirigid carbohydrate trunk and smectic one for the flexible side chains. On the other hand, WAXD profiles of C(n)-ACs (n = 14-18) indicated almost no temperature dependence from -150 to +220 degrees C. Therefore, it was reasonably assumed that the pseudo-first-order transition observed in thermograms of C(n)-ACs (n = 16-20) was due to the enthalpy relaxation of the side-chain assemblage. An insight was provided into the kinetics of the characteristic aging behavior as a liquid-crystalline glass, in comparison with the corresponding data for other noncrystalline macromolecules.

摘要

在N,N - 二甲基乙酰胺 - 氯化锂均相体系中,用吡啶、对甲苯磺酰氯和正链烷酸合成了具有正酰基(C(n)H(2n - 1)O-;n = 4 - 20)的几丁质衍生物。产物(C(n)-ACs;酰基取代度,DS = 1.7 - 1.9)呈现出n依赖性的热转变行为:无明显转变(n = 4 - 10)、玻璃化转变(n = 12和14)以及准一级相变(n = 16 - 20),通过差示扫描量热法检测时,后两者通常在室温以下发生。20℃下的广角X射线衍射(WAXD)显示,各个C(n)-ACs分别有一个尖锐的衍射峰(2θ = 2° - 7°)和一个弥散晕(2θ约为20°)。前者的d间距(1.5 - 3.6 nm)随着n的增加而增大,产生两个相互不同的增加速率阶段,这反映了主链层状结构周期的系统n依赖性。C(n)-ACs的分子组装表现出“双重介晶性”;半刚性碳水化合物主干呈现向列有序,柔性侧链呈现近晶有序。另一方面,C(n)-ACs(n = 14 - 18)的WAXD图谱表明,在-150至+220℃范围内几乎没有温度依赖性。因此,合理推测在C(n)-ACs(n = 16 - 20)的热谱图中观察到的准一级转变是由于侧链聚集体的焓松弛。与其他非晶态大分子的相应数据相比,对作为液晶玻璃的特征老化行为的动力学提供了深入了解。

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