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Self-growing photonic composites with programmable colors and mechanical properties

Engineering and Technology

Self-growing photonic composites with programmable colors and mechanical properties

J. Xue, X. Yin, et al.

This innovative research, conducted by Juan Xue, Xuewu Yin, Lulu Xue, Chenglin Zhang, Shihua Dong, Li Yang, Yuanlai Fang, Yong Li, Ling Li, and Jiaxi Cui, explores a groundbreaking approach to creating advanced structural color materials inspired by the remarkable color-changing abilities of peacock feathers. The self-growing photonic composite system enables on-demand tuning of colors and properties, introducing flexibility, toughness, and self-healing features into the materials.... show more
Abstract
Many organisms produce stunning optical displays based on structural color instead of pigmentation. This structural or photonic color is achieved through the interaction of light with intricate micro-/nano-structures, which are grown from strong, sustainable biological materials such as chitin, keratin, and cellulose. In contrast, current synthetic structural colored materials are usually brittle, inert, and produced via energy-intensive processes, posing significant challenges to their practical uses. Inspired by the brilliantly colored peacock feathers which selectively grow keratin-based photonic structures with different photonic bandgaps, we develop a self-growing photonic composite system in which the photonic bandgaps and hence the coloration can be easily tuned. This is achieved via the selective growth of the polymer matrix with polymerizable compounds as feeding materials in a silica nanosphere-polymer composite system, thus effectively modulating the photonic band-gaps without compromising nanostructural order. Such strategy not only allows the material system to continuously vary its colors and patterns in an on-demand manner, but also endows it with many appealing properties, including flexibility, toughness, self-healing ability, and reshaping capability. As this innovative self-growing method is simple, inexpensive, versatile, and scalable, we foresee its significant potential in meeting many emerging requirements for various applications of structural color materials.
Publisher
Nature Communications
Published On
Dec 19, 2022
Authors
Juan Xue, Xuewu Yin, Lulu Xue, Chenglin Zhang, Shihua Dong, Li Yang, Yuanlai Fang, Yong Li, Ling Li, Jiaxi Cui
Tags
photonic composite
color-changing materials
self-growing system
structural colors
polymers
flexibility
toughness
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