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缠结对半结晶聚合物结晶过程中折叠的影响。

Impact of Entanglement on Folding of Semicrystalline Polymer during Crystallization.

作者信息

Jin Fan, Huang Zheng, Zheng Ying, Sun Chenxuan, Kafle Navin, Ma Jiayang, Pan Pengju, Miyoshi Toshikazu

机构信息

School of Polymer Science and Polymer Engineering, The University of Akron, Akron, Ohio 44325-3909, United States.

State Key Laboratory of Chemical Engineering, College of Chemical and Biological Engineering, Zhejiang University, 38 Zheda Road, Hangzhou 310027, China.

出版信息

ACS Macro Lett. 2023 Aug 15;12(8):1138-1143. doi: 10.1021/acsmacrolett.3c00364. Epub 2023 Jul 28.

Abstract

Upon cooling, semicrystalline polymers experience crystallization and form alternatively stacked layers consisting of thin crystal lamellae and amorphous ones. The unique morphology, crystallinity, and crystallization kinetics highly depend on the molecular weight. Therefore, it is deduced that entanglement impacts crystallization kinetics, as well as hierarchically crystalline structures. However, the impact of entanglement on folded crystalline chains has not been well understood due to experimental difficulties. In this work, chain-folding structures for seven C CH labeled poly(l-lactic acid)s with various molecular weights (s) were investigated by C-C double quantum NMR spectroscopy. As a result, chain-folding events were categorized into three different regimes: (i) The lowest sample (2K g/mol) adopts an extended chain conformation (folding number, = 0) (regime I); (ii) Intermediate ones possess mixtures of non- and once-folded structures, and the once-folded fraction suddenly increases above the entanglement length (), up to = 45K g/mol (regime II); (iii) The high ones ( > 45K g/mol) adopt the highest chance for an adjacent re-entry structure with = 1.0 in the well-developed entangled network (regime III). It was suggested that entanglement induces folding of the semicrystalline polymer.

摘要

冷却时,半结晶聚合物会发生结晶,并形成由薄晶体片层和非晶片层交替堆叠而成的层。其独特的形态、结晶度和结晶动力学高度依赖于分子量。因此,可以推断缠结会影响结晶动力学以及分层晶体结构。然而,由于实验困难,缠结对折叠结晶链的影响尚未得到很好的理解。在这项工作中,通过碳 - 碳双量子核磁共振光谱研究了七种具有不同分子量的碳 - 碳标记的聚(L - 乳酸)的链折叠结构。结果,链折叠事件被分为三种不同的情况:(i)分子量最低的样品(2K g/mol)采用伸展链构象(折叠数,= 0)(情况I);(ii)中等分子量的样品具有非折叠和单折叠结构的混合物,并且单折叠部分在高于缠结长度()时突然增加,直至 = 45K g/mol(情况II);(iii)高分子量的样品(> 45K g/mol)在发达的缠结网络中采用相邻再进入结构且 = 1.0的可能性最高(情况III)。研究表明,缠结会诱导半结晶聚合物的折叠。

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