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Segmental dynamics of polyethylene-alt-propylene studied by NMR spin echo techniques

机译:NMR旋转回波技术研究的聚乙烯 - 丙烯的分段动力学

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Segmental dynamics of a highly entangled melt of linear polyethylene-alt-propylene with a molecular weight of 200 kDawas studied with a novel proton nuclear magnetic resonance (NMR) approach based upon H-1 -> (2)Hisotope dilution as applied to a solid-echo build-up function I-SE(t), which is constructed from the NMR spin echo signals arising from the Hahn echo (HE) and two variations of the solid-echo pulse sequence. The isotope dilution enables the separation of inter-and intramolecular contributions to this function and allows one to extract the segmental mean-squared displacements in the millisecond time range, which is hardly accessible by other experimental methods. The proposed technique in combination with time-temperature superposition yields information about segmental translation in polyethylene-alt-propylene over 6 decades in time from 10(-6) s up to 1 s. The time dependence of the mean-squared displacement obtained in this time range clearly shows three regimes of power law with exponents, which are in good agreement with the tube-reptation model predictions for the Rouse model, incoherent reptation and coherent reptation regimes. The results at short times coincide with the fast-field cycling relaxometry and neutron spin echo data, yet, significantly extending the probed time range. Furthermore, the obtained data are verified as well by the use of the dipolar-correlation effect on the Hahn echo, which was developed before by the co-authors. At the same time, the amplitude ratio of the intermolecular part of the proton dynamic dipole-dipole correlation function over the intramolecular part obtained from the experimental data is not in agreement with the predictions of the tube-reptation model for the regimes of incoherent and coherent reptation. Published by AIP Publishing.
机译:基于H-1 - >(2)施用于固体的新型质子核磁共振(NMR)方法,采用新型质子核磁共振(NMR)方法研究了高度缠绕的线性聚乙烯 - 丙烯的分段动力学-Echo积累功能I-SE(t),其由来自HAHN回波(HE)产生的NMR旋转回波信号和固态回波脉冲序列的两个变体构成。同位素稀释使得能够分离与该功能的间际和分子内贡献,并允许一个人在毫秒的时间范围内提取分段平均平方位移,这几乎不能通过其他实验方法可访问。所提出的技术与时间温度叠加相结合,产生关于聚乙烯 - ALT-丙烯的节段平移的信息,从10(-6)秒高达6℃。在该时间范围内获得的平均平均位移的时间依赖性清楚地示出了具有指数的权力法制度,这与罗萨模型,非连贯的重新开始和连贯的重新开始制度的管恢复模型预测良好。短时间内的结果与快现场循环放置和中子旋转回波数据一致,但显着延伸了探测时间范围。此外,也通过使用与共同作者以前开发的哈恩回波的偶极相关效果来验证所获得的数据。同时,从实验数据获得的分子内部分的质子动态偶极子 - 偶极子相关功能的分子间部分的幅度比不一于对非连贯性和连贯性制度的管重新模型的预测重新开始。通过AIP发布发布。

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