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Solid state NMR and wide angle X-ray diffraction studies of supercritical fluid CO2-treated poly(ethylene terephthalate)

机译:超临界流体二氧化碳处理的聚对苯二甲酸乙二醇酯的固态NMR和广角X射线衍射研究

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Poly(ethylene terephthalate) (PET) was treated with supercritical fluid (SCF) carbon dioxide to study crystallization of this polymer under SCF conditions. Solid state NMR spectroscopy and wide angle X-ray diffraction; (WAXD) detected dramatic changes in the PET molecular structure and motion after treatment. To fit WAXD data, the powder diffraction pattern for crystalline PET was calculated and is reported here for the first time. The WAXD results indicate an increase in crystallinity from essentially zero in the as-received sample to 62% in the SCF-treated sample. This large increase in the crystallinity of the SCF-treated PET was verified by the NMR relaxation measurements. The X-ray crystallite size, obtained from WAXD, was compared with those obtained from NMR proton spin diffusion measurements. The C-13 signals for aliphatic carbons (centered at 61.5 ppm) in the PET crystalline domain were resolved for the first time in a C-13 cross polarization/magic angle spinning spectrum (CP/MAS) due to the SCF treatment. The C-13 chemical shift tensors for PET were determined experimentally and were also compared to theoretical ab initio calculations. The anisotropic chemical shift data were then interpreted in terms of changes in the molecular conformation in PET as a result of SCF CO2 treatment. It was found that the SCF CO2 treatment is an effective method for enhancing the crystallinity of PET. These results in PET strongly support the previously proposed model for the existence of three motional regimes; crystalline, rigid amorphous, and mobile amorphous. [References: 43]
机译:用超临界流体(SCF)二氧化碳处理聚对苯二甲酸乙二醇酯(PET),以研究该聚合物在SCF条件下的结晶。固态NMR光谱和广角X射线衍射; (WAXD)检测到治疗后PET分子结构和运动的剧烈变化。为了拟合WAXD数据,计算出了结晶PET的粉末衍射图,并首次在此报道。 WAXD结果表明,结晶度从接收样品中的基本为零增加到SCF处理样品中的62%。 SCF处理的PET的结晶度的大幅增加已通过NMR弛豫测量得到了证实。将WAXD获得的X射线微晶尺寸与NMR质子自旋扩散测量获得的X射线微晶尺寸进行比较。由于SCF处理,首次在C-13交叉极化/魔角旋转光谱(CP / MAS)中解析了PET晶域中脂族碳的C-13信号(中心为61.5 ppm)。实验确定了PET的C-13化学位移张量,并将其与理论上的从头算进行了比较。然后根据SCF CO2处理的结果,根据PET中分子构象的变化来解释各向异性化学位移数据。已经发现,SCF CO 2处理是增强PET结晶度的有效方法。 PET中的这些结果强有力地支持了先前提出的存在三种运动状态的模型。结晶,刚性非晶态和移动非晶态。 [参考:43]

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