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晶体厚度和拓扑约束对线性聚乙烯链扩散的影响。

Influence of crystal thickness and topological constraints on chain diffusion in linear polyethylene.

作者信息

Yao Yefeng, Graf Robert, Spiess Hanswolfgang, Rastogi Sanjay

机构信息

Department of Physics and Shanghai key Laboratory of Magnetic Resonance, East China Normal University, North Zhongshan Road 3663, 200062 Shanghai, P. R. China; Max-Planck-Institute for Polymer Research, Ackermannweg 10, 55128 Mainz, Germany.

出版信息

Macromol Rapid Commun. 2009 Jul 1;30(13):1123-7. doi: 10.1002/marc.200900114. Epub 2009 May 20.

Abstract

(13) C solid-state exchange NMR is applied to study the influence of morphology on chain diffusion between crystalline and noncrystalline regions in ultrahigh molecular weight linear polyethylene (PE). Lamellar-doubling reduces the exchange rate by a factor of two indicating that the chain diffusion coefficient is largely independent of the lamellar thickness. This is discussed in terms of molecular processes in the crystallites leading to chain diffusion, confirming that the role of defects is minor compared to helical jumps of extended stems. Hindrance of the chain diffusion resulting from chain entanglements was only observed after the chains diffuse over long distances. Moreover, the role of the interphase between the noncrystalline and the crystalline regions on chain diffusion is discussed.

摘要

(13)采用碳固体核磁共振交换技术研究了形态对超高分子量线性聚乙烯(PE)结晶区和非晶区之间链扩散的影响。片层加倍使交换速率降低了一半,这表明链扩散系数在很大程度上与片层厚度无关。从微晶中导致链扩散的分子过程方面对此进行了讨论,证实与伸展链段的螺旋跳跃相比,缺陷的作用较小。只有在链进行长距离扩散后才观察到链缠结对链扩散的阻碍。此外,还讨论了非晶区和结晶区之间的界面在链扩散中的作用。

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