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Phase Structures of Nascent Polyethylene Powder Studied by Wideline Proton NMR
引用本文:严小伟 王靖岱 任晓红 阳永荣 蒋斌波 VODA, Mihai Adrian BERTMER, Marko STAPF, Siegfried. Phase Structures of Nascent Polyethylene Powder Studied by Wideline Proton NMR[J]. 中国化学, 2007, 25(6): 863-868. DOI: 10.1002/cjoc.200790158
作者姓名:严小伟 王靖岱 任晓红 阳永荣 蒋斌波 VODA   Mihai Adrian BERTMER   Marko STAPF   Siegfried
作者单位:[1]College of Material Science and Chemical Engineering, Zhejiang University, Hangzhou, Zhejiang 310027, China [2]Institute of Technical and Macromolecular Chemistry, RWTH Aachen University, Worringerweg 1, 52074 Aachen, Germany
基金项目:Project supported by the National Natural Science Foundation of China (No. 20490205) and CSC-DAAD Collaboration Project (2004).
摘    要:
The wideline proton NMR spectra of polyethylene powder samples were analyzed in terms of contributions from three components: (1) a rigid part with immobile chains, (2) a soft region with liquid-like character which produces a Lorentzian contribution to the spectrum, and (3) an intermediate region in which the rotation of methylene groups about C-C bonds is partially hindered. The relative mass fractions as well as chain mobilities varied greatly among samples produced by different polymerization techniques. The NMR crystallinity agreed well with that estimated by WAXD and was much higher than DSC crystallinity, indicating an inclusion of the contribution from a crystalline-amorphous interphase. The crystalline defects in the rigid part could be significantly affected by processing parameters when employing the same type of polymerization technique. The intermediate region in the NMR spectra was analyzed according to the comparison between bimodal high density polyethylene and corresponding linear unimodal one. It was found that the mass fraction of the NMR interphase could be an indication of the percentage of tie molecules between crystalline lamellae and thus may significantly affect the mechanical properties of polymeric material.

关 键 词:初生态  聚乙烯粉末  宽线质子NMR  相结构
修稿时间:2006-10-242007-03-28

Phase Structures of Nascent Polyethylene Powder Studied by Wideline Proton NMR
YAN, Xiao-Wei WANG, Jing-Dai REN, Xiao-Hong YANG, Yong-Rong JIANG, Bin-Bo VODA, Mihai Adrian BERTMER, Marko STAPF, Siegfried. Phase Structures of Nascent Polyethylene Powder Studied by Wideline Proton NMR[J]. Chinese Journal of Chemistry, 2007, 25(6): 863-868. DOI: 10.1002/cjoc.200790158
Authors:YAN   Xiao-Wei WANG   Jing-Dai REN   Xiao-Hong YANG   Yong-Rong JIANG   Bin-Bo VODA   Mihai Adrian BERTMER   Marko STAPF   Siegfried
Affiliation:a College of Material Science and Chemical Engineering, Zhejiang University, Hangzhou, Zhejiang 310027, China; b Institute of Technical and Macromolecular Chemistry, RWTH Aachen University, Worringerweg 1, 52074 Aachen, Germany
Abstract:
The wideline proton NMR spectra of polyethylene powder samples were analyzed in terms of contributions from three components:(1) a rigid part with immobile chains, (2) a soft region with liquid‐like character which produces a Lorentzian contribution to the spectrum, and (3) an intermediateregion in which the rotation of methylene groups about C–C bonds is partially hindered. The relative mass fractions as well as chain mobilities varied greatly among samples produced by different polymerization techniques. The NMR crystallinity agreed well with that estimated by WAXD and was much higher than DSC crystallinity, indicating an inclusion of the contribution from a crystalline‐amorphous interphase. The crystalline defects in the rigid part could be significantly affected by processing parameters when employing the same type of polymerization technique. The intermediate region in the NMR spectra was analyzed according to the comparison between bimodal high density polyethylene and corresponding linear unimodal one. It was found that the mass fraction of the NMR interphase could be an indication of the percentage of tie molecules between crystalline lamellae and thus may significantly affect the mechanical properties of polymeric material.
Keywords:polyethylene powder   wideline NMR   phase structure
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