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Color construction of multi-colored carbon fibers using glucose

Engineering and Technology

Color construction of multi-colored carbon fibers using glucose

S. Zhou, C. Zhang, et al.

Discover a groundbreaking in-situ self-growing strategy for multi-colored carbon fibers using glucose as a feeding material. This innovative method mimics the beauty of nature, inspired by peacock feathers, ensuring color stability and robustness against various stresses. This cost-effective approach opens new doors for the production of vibrant carbon fibers, researched by Sijie Zhou, Chunhua Zhang, Zhuan Fu, Qimeng Zhu, Zhaozixuan Zhou, Junyao Gong, Na Zhu, Xiaofeng Wang, Xinjie Wei, and Liangjun Xia.... show more
Abstract
Carbon fibers (CFs) have attracted attention in the automotive, aviation, and aerospace industries. However, the coloration of CFs is challenging due to their brittleness, inertness, complexity, and time/energy-intensive processes. Herein, inspired by the naturally grown protrusive nanostructures on the green central surface of peacock back feathers, we report an in-situ self-growing strategy for developing carbon spheres (CSs) on the CFs surface to achieve color tuning. This is achieved via the dynamic growth of CSs using glucose as the feeding material. Combined with the coloration process, the interaction between CSs and CFs promotes stable interfacial forces in integrated molding. This strategy allows the coloring system to continuously vary its color in a designated manner, thereby, endowing it with satisfactory mechanical robustness, acid durability, and light fastness. We anticipate this developed approach can be potentially competitive in the color construction of CFs with multi-colors due to its low-cost manufacturing.
Publisher
Nature Communications
Published On
Mar 04, 2024
Authors
Sijie Zhou, Chunhua Zhang, Zhuan Fu, Qimeng Zhu, Zhaozixuan Zhou, Junyao Gong, Na Zhu, Xiaofeng Wang, Xinjie Wei, Liangjun Xia
Tags
carbon fibers
glucose
color tuning
self-growing strategy
nanostructures
mechanical stability
cost-effective
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