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X-ray Crystal Structure Analysis of Poly(3-hydroxybutyrate) beta-Form and the Proposition of a Mechanism of the Stress-Induced alpha-to-beta Phase Transition

机译:聚(3-羟基丁酯)β-形式的X射线晶体结构分析及应力诱导的α-β相变的机制的命题

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The crystal structure of poly(3-hydroxybutyrare) beta crystal form has been analyzed on the basis of two-dimensional X-ray diffraction data. The all-trans zigzag chains are packed in the hexagonal unit cell of a = b = 9.22 angstrom, c (chain axis) = 4.66 angstrom, and gamma = 120 degrees with the space group P3(2)21. The upward and downward chains are statistically located at one lattice site at 50% probability. By combining the thus analyzed structure information of the beta-form with the previously reported structure information of the alpha-form, the geometrical relation between these two crystalline phases has been clarified in detail. The tension-induced alpha-to-beta phase transition affects the higher-order structural change, as known from the small-angle X-ray scattering (SAXS) data collected in the tensile deformation process. By analyzing all experimentally obtained wide-angle X-ray diffraction and SAXS data, the following transition model has been proposed: the high tension to the oriented sample causes the increase of the long period of the a-form lamellae. As the tensile force is increased, the local stress concentration starts to occur at the short tie chain segmental parts in the amorphous region sandwiched between the stacked lamellae. These highly tensioned tie chains induce the alpha-to-beta structural change in both amorphous and directly connected crystalline regions and generate the 40 angstrom-wide bundles of zigzag chain segments passing through several neighboring lamellae along the draw direction. These bundles are repeated with the averaged period of about 90 angstrom in the lateral direction perpendicular to the draw axis. Further stretching causes the cut of the highly tensioned extended chain parts, resulting in the formation of voids and finally the breakage of the whole sample before the completion of the phase transition from the alpha- to beta-form.
机译:在二维X射线衍射数据的基础上分析了聚(3-羟基丁雷)β晶体形式的晶体结构。全晶Zigzag链填充在A = B = 9.22埃的六边形单元电池中,C(链轴)= 4.66埃,伽马= 120度,空间组P3(2)21。向上和向下的链在50%的概率下统计地位于一个晶格位置。通过将如此分析的β-形式的结构信息与先前报道的α-形式的结构信息组合,已经详细阐明了这两个结晶相之间的几何关系。张力诱导的α-β相变影响较高阶的结构变化,从拉伸变形过程中收集的小角X射线散射(SAX)数据已知。通过分析所有实验获得的广角X射线衍射和萨克斯数据,已经提出了以下过渡模型:取向样品的高张力导致A形薄片的长时间的增加。随着拉伸力的增加,局部应力浓度开始发生在夹在堆叠的薄片之间的非晶区域中的短扎链分段部分。这些高度张紧的延伸链诱导非晶态和直连接的结晶区域中的α-β结构变化,并产生沿着拉伸方向通过几个相邻薄片的40埃宽的锯齿形锯齿状链段。这些束在垂直于拉伸轴的横向方向上的平均周期重复。进一步的拉伸导致高度张紧的延伸链部件的切割,导致空隙的形成,最后在从α-β-形成的相转变完成之前的整个样品的破裂。

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