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聚(己二酸丁二醇酯)溶液生长的链折叠片晶的晶体结构、热行为及酶促降解

Crystal structure, thermal behavior and enzymatic degradation of poly(tetramethylene adipate) solution-grown chain-folded lamellar crystals.

作者信息

Iwata Tadahisa, Kobayashi Shiomi, Tabata Kenji, Yonezawa Noriyuki, Doi Yoshiharu

机构信息

Polymer Chemistry Laboratory, RIKEN Institute, 2-1 Hirosawa, Wako-shi, Saitama 351-0198, Japan.

出版信息

Macromol Biosci. 2004 Mar 15;4(3):296-307. doi: 10.1002/mabi.200300086.

Abstract

Solution-grown chain-folded lamellar single crystals of poly(tetramethylene adipate) (PTMA) were prepared from a dilute solution of 2-methyl-1-propanol by isothermal crystallization. PTMA crystals were hexagonal-shaped and polyethylene decoration of the crystals resulted in a "six cross-sector" surface morphology and showed that the average direction of chain folding is parallel to the crystal growth planes of [110] and [010]. Chain-folded lamellar crystals gave well-resolved electron diffraction diagrams corresponding to all the equatorial reflections of the X-ray fiber diagram obtained from stretched PTMA melt-quenched film (beta structure). The unit cell parameters of the beta structure of PTMA were determined as a = 0.503 nm, b = 0.732 nm and c (fiber axis) = 1.442 nm with an orthorhombic crystal system. The fiber repeat distance is appropriate for an all-trans backbone conformation for the straight stems. The setting angle, with respect to the a axis, is +/-46 degrees for the corner and center chains. Thermal behavior of lamellar crystals has been investigated by means of transmission electron microscopy (TEM) and atomic force microscopy (AFM). The lamellar thickness at the edges of the crystal increased after thermal treatment with taking the molecular chains into recrystallization parts; the holes then opened up at the thickening front of the crystal. The morphological changes of lamellar crystals after enzymatic degradation by Lipase type XIII from Pseudomonas sp. and water-soluble products were characterized by TEM, AFM, gel permeation chromatography, high performance liquid chromatography and fast atom bombardment mass spectrometry. The degradation progressed mainly from the edges of the lamellar crystals without decreasing the molecular weights and the lamellar thicknesses. The central portion of single crystals was often degraded by enzymatic attacks. This result combined with thermal behavior indicates that the loosely chain-packing region exists inside the single crystal, and that molecular chains in this region have higher mobility against thermal and enzymatic treatments.

摘要

通过在2-甲基-1-丙醇稀溶液中进行等温结晶,制备了聚(己二酸丁二醇酯)(PTMA)溶液生长的链折叠片状单晶。PTMA晶体呈六边形,晶体的聚乙烯修饰产生了“六扇形”表面形态,并表明链折叠的平均方向与[110]和[010]的晶体生长平面平行。链折叠片状晶体给出了与从拉伸的PTMA熔体淬火膜(β结构)获得的X射线纤维图的所有赤道反射相对应的分辨率良好的电子衍射图。PTMA的β结构的晶胞参数确定为a = 0.503 nm,b = 0.732 nm,c(纤维轴)= 1.442 nm,晶体系统为正交晶系。纤维重复距离适合直链茎的全反式主链构象。角链和中心链相对于a轴的设定角为+/-46度。通过透射电子显微镜(TEM)和原子力显微镜(AFM)研究了片状晶体的热行为。热处理后,晶体边缘的片层厚度增加,分子链进入再结晶部分;然后在晶体增厚前沿出现孔洞。用假单胞菌属的XIII型脂肪酶进行酶促降解后,片状晶体的形态变化以及水溶性产物通过TEM、AFM、凝胶渗透色谱、高效液相色谱和快原子轰击质谱进行了表征。降解主要从片状晶体的边缘开始,而分子量和片层厚度没有降低。单晶的中心部分经常受到酶的攻击而降解。这个结果与热行为相结合表明,单晶内部存在链堆积松散的区域,并且该区域的分子链在热和酶处理方面具有更高的流动性。

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