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天然橡胶/甲壳素纳米纤维复合材料中应变诱导的 3D 取向微晶。

Strain-induced 3D-oriented crystallites in natural rubber/chitin nanofiber composites.

机构信息

Key Laboratory of Rubber-Plastics, Ministry of Education/Shandong Provincial Key Laboratory of Rubber-Plastics, Qingdao University of Science & Technology, Qingdao City 266042, P. R. China.

State Key Laboratory of Chemical Resource Engineering, College of Materials Science and Engineering, Beijing University of Chemical Technology, Beijing 100029, P. R. China.

出版信息

Soft Matter. 2023 Apr 26;19(16):2932-2940. doi: 10.1039/d3sm00022b.

Abstract

Natural rubber (NR) composites containing bio-based chitin nanofibers (ChNFs) exhibit a wide range of mechanical properties - from rubber to plastic behavior - with increasing chitin contents. A constrained 3-dimensional network can be formed by mixing natural rubber latex and a modified zwitterionic rigid chitin counterpart. By inclusion of highly anisotropic chitin nanofibers (30 wt%), strain-induced NR crystallization occurs at a much lower strain of 50%. More intriguingly, 2D-WAXD results reveal that the strain-induced crystallization of NR/ChNFs composites show 3-dimensionally oriented crystallite formation behaving similar to "3D-single crystals orientation" when the content of ChNFs is over 5 wt%. It is suggested that not only -axis (NR chains) orients along the stretching direction, but also the - and -axes deliberately arrange along the normal direction and transverse direction, respectively. Structure and morphology in 3-dimensional spaces after strain-induced crystallization of the NR/ChNFs30 composite are investigated in detail. Therefore, this study might pave a new way to enhance mechanical properties by incorporation of ChNFs, obtaining 3-dimensionally oriented crystallites of novel multifunctional NR/ChNFs composite with shape memory ability.

摘要

天然橡胶(NR)复合材料含有生物基甲壳素纳米纤维(ChNFs),随着甲壳素含量的增加,表现出广泛的机械性能 - 从橡胶到塑料行为。通过混合天然橡胶胶乳和改性两性离子刚性甲壳素对应物,可以形成约束的 3 维网络。通过包含高各向异性的甲壳素纳米纤维(30wt%),在应变 50%时就会发生 NR 应变诱导结晶。更有趣的是,2D-WAXD 结果表明,当 ChNFs 的含量超过 5wt%时,NR/ChNFs 复合材料的应变诱导结晶显示出 3 维取向的晶体形成,类似于“3D-单晶取向”。这表明不仅 - 轴(NR 链)沿着拉伸方向取向,而且 - 和 - 轴也分别沿着法向和横向有目的地排列。详细研究了 NR/ChNFs30 复合材料在应变诱导结晶后的 3 维空间中的结构和形态。因此,这项研究可能为通过加入 ChNFs 来增强机械性能开辟一条新途径,获得具有形状记忆能力的新型多功能 NR/ChNFs 复合材料的 3 维取向晶体。

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