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~1H multiple-quantum nuclear magnetic resonance investigations of molecular order in polymer networks.II.Intensity decay and restricted slow dynamics

机译:聚合物网络中分子级的〜1H多量子核磁共振研究II。强度衰减和受限的慢动力学

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We present an approach towards the analysis of the intensity decay in proton multiple-quantum experiments on polymeric networks in terms of slow fluctuations of the residual dipole-dipole coupling tensor.Solutions for individual spin pairs as well as the three-spin system of methyl groups are derived,and the influence of the cycle time of the multiple-quantum pulse sequence is evaluated.The multiple-quantum strategy discussed herein features the advantage that the magnitude of the fluctuating part of the residual dipole-dipole coupling constant and the correlation time of the slow process can be determined independently of the integral residual coupling constant as well as its distribution.The theory is applied to experiments on end-linked poly(dimethylsiloxane) model networks with mono-and bimodal chain length distributions,where it is found that,for all samples,correlation times of the slow processes average to about 1 ms,and that the magnitude of the fluctuating part of the dipole-dipole coupling is significantly smaller than the average dipole-dipole coupling constant.This observations is interpreted in terms of considerably restricted reorientations of topological constrains.
机译:我们根据剩余偶极-偶极耦合张量的缓慢波动提出了一种在聚合物网络上质子多量子实验中分析强度衰减的方法。单个自旋对以及甲基的三自旋系统的解决方案本文讨论的多量子策略具有以下优点:剩余偶极子-偶极子耦合常数的波动部分的大小和相关的时间。该理论可用于单链和双峰链长分布的末端连接的聚(二甲基硅氧烷)模型网络的实验,发现:对于所有样品,慢过程的相关时间平均约为1 ms,偶极子d的波动部分的大小偶极子耦合比平均偶极子-偶极子耦合常数小得多。此观察结果是根据拓扑约束的显着受限的重新定向来解释的。

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