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Interpretation of d-spacing determined by wide angle X--ray scattering in 6fp.DA-based polyimide by molecular modeling

机译:基于分子模型的6fp.DA基聚酰亚胺中广角X射线散射确定d间距的解释

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Interpretation of d-spacing determined by wide angle X-ray scattering (WAXS) is of great interest in the study of gas diffusivity or permeability in glassy polymers. Studies of WAXS analysis and of molecular modeling were carried out as a new approach in which to interpret the d--spacings in polyimide synthesized from 2,2--bis (3,4-carboxyphenyl) hexafluoropropane dianhydride (6fp.DA). The tetramer conformation and the amorphous polymer structure at 25deg.C were modeled using the semi-empirical molecular orbital method and the molecular dynamics method. The corresponding theoretical X-ray scattering functions were calculated from the atomic coordinates using Debye's equation and then compared with the experimental data. The amorphous polymer model was found to be superior to the tetramer conformation model in the predicting experimental X--ray scattering function. It was found that the d--spacing for 6fp.DA-BAAF polyimide was clearly affected by intramolecular distances containing F atoms.
机译:由广角X射线散射(WAXS)确定的d间距的解释在研究玻璃状聚合物中的气体扩散性或渗透性方面引起了极大的兴趣。 WAXS分析和分子模型研究是一种新方法,用于解释由2,2-双(3,4-羧苯基)六氟丙烷二酐(6fp.DA)合成的聚酰亚胺中的d-间隔。使用半经验分子轨道方法和分子动力学方法对25℃下的四聚体构象和无定形聚合物结构进行建模。使用Debye方程从原子坐标计算出相应的理论X射线散射函数,然后将其与实验数据进行比较。在预测实验X射线散射功能方面,发现无定形聚合物模型优于四聚体构象模型。发现6fp.DA-BAAF聚酰亚胺的d-间隔明显受含F原子的分子内距离的影响。

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