Tanaka Masakazu, Young Robert J
Materials Science Centre, School of Materials, The University of Manchester, Grosvenor Street, Manchester, M1 7HS United Kingdom.
Biomacromolecules. 2006 Sep;7(9):2575-82. doi: 10.1021/bm060326l.
Molecular orientation distributions in the crystalline and amorphous regions of a biaxially oriented poly(L-lactic acid) film were analyzed fully by polarized Raman spectroscopy. Raman bands at 926 and 875 cm(-1) were chosen for the determination of the most probable molecular orientation distribution functions for the crystalline and amorphous regions in the film. It was revealed that the PLLA molecules were oriented biaxially in both the crystalline and amorphous regions. The orientation distribution normal to the film surface was found to be broader in the amorphous regions than in the crystalline regions. Furthermore, a predominant unidirectional molecular orientation was observed in the crystalline regions, whereas the molecular orientation distribution in the amorphous regions was isotropic in the plane parallel to the film surface. The different behavior of the crystalline and amorphous regions suggests that each region underwent different deformation mechanisms during the film formation.
通过偏振拉曼光谱对双轴取向聚(L-乳酸)薄膜的结晶区和非晶区中的分子取向分布进行了全面分析。选择926和875 cm⁻¹处的拉曼谱带来确定薄膜中结晶区和非晶区最可能的分子取向分布函数。结果表明,聚L-乳酸(PLLA)分子在结晶区和非晶区均为双轴取向。发现垂直于薄膜表面的取向分布在非晶区比在结晶区更宽。此外,在结晶区观察到主要的单向分子取向,而在平行于薄膜表面的平面内,非晶区的分子取向分布是各向同性的。结晶区和非晶区的不同行为表明,在薄膜形成过程中每个区域经历了不同的变形机制。