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支链纤维素共聚物的显著热塑性:接枝链依赖性结构转变与热塑性

Remarkable thermoplasticity of branched cellulose copolymers: Graft-chain-dependent structural transition and thermoplasticity.

作者信息

Lee Woojin, Ahn Yongjun, Chung Jae Woo, Kwak Seung-Yeop

机构信息

Department of Materials Science and Engineering, Seoul National University, Seoul, 08826, Republic of Korea.

Department of Organic Materials and Fiber Engineering, Soongsil University, 369 Sangdo-ro, Dongjak-gu, Seoul, 06978, Republic of Korea.

出版信息

Carbohydr Polym. 2021 Jun 1;261:117862. doi: 10.1016/j.carbpol.2021.117862. Epub 2021 Feb 25.

Abstract

In this study, we designed novel methods to prepare a cellulose graft copolymer series (Cell-g-PDLs) with varied graft chain lengths, via direct ring-opening polymerization (ROP) of unmodified cellulose with alkyl-branched lactones. With increasing alkyl-branched graft chain length of the Cell-g-PDLs, the crystalline phase of cellulose became increasingly weakened, while the glass transition temperature significantly decreased. The latter was attributed to the extended free volume derived from the increased chain end-group concentrations of the branched graft chains. These results suggested that the incorporation of a highly alkyl-branched graft chain into unmodified cellulose is an effective way to improve its thermo-plasticity. Notably, the Cell-g-PDL with the longest graft chain (Cell-g-PDL9) was demonstrative of highly sufficient thermo-plasticity, owing to the enhanced molecular mobility resulting from the reduced frictional forces between the cellulose molecules.

摘要

在本研究中,我们设计了新方法,通过未改性纤维素与烷基支链内酯的直接开环聚合(ROP)制备具有不同接枝链长度的纤维素接枝共聚物系列(Cell-g-PDLs)。随着Cell-g-PDLs烷基支链接枝链长度的增加,纤维素的晶相逐渐减弱,而玻璃化转变温度显著降低。后者归因于支化接枝链末端基团浓度增加导致的自由体积扩展。这些结果表明,将高度烷基支化的接枝链引入未改性纤维素是提高其热塑性的有效方法。值得注意的是,具有最长接枝链的Cell-g-PDL(Cell-g-PDL9)表现出高度充分的热塑性,这是由于纤维素分子间摩擦力减小导致分子流动性增强。

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