Synthetic high-performance fibers present excellent mechanical properties and promising applications in the impact protection field. However, fabricating fibers with high strength and high toughness is challenging due to their intrinsic conflicts. Herein, we report a simultaneous improvement in strength, toughness, and modulus of heterocyclic aramid fibers by 26%, 66%, and 13%, respectively, via polymerizing a small amount (0.05âwt%) of short aminated single-walled carbon nanotubes (SWNTs), achieving a tensile strength of 6.44â±â0.11âGPa, a toughness of 184.0â±â11.4 MJ m(-3), and a Young's modulus of 141.7â±â4.0âGPa. Mechanism analyses reveal that short aminated SWNTs improve the crystallinity and orientation degree by affecting the structures of heterocyclic aramid chains around SWNTs, and in situ polymerization increases the interfacial interaction therein to promote stress transfer and suppress strain localization. These two effects account for the simultaneous improvement in strength and toughness.
Fabricating strong and tough aramid fibers by small addition of carbon nanotubes.
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作者:Luo Jiajun, Wen Yeye, Jia Xiangzheng, Lei Xudong, Gao Zhenfei, Jian Muqiang, Xiao Zhihua, Li Lanying, Zhang Jiangwei, Li Tao, Dong Hongliang, Wu Xianqian, Gao Enlai, Jiao Kun, Zhang Jin
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2023 | 起止号: | 2023 May 25; 14(1):3019 |
| doi: | 10.1038/s41467-023-38701-4 | ||
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