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Updated: Jan 8, 2026

Synthesis of Keratin-based Nanofiber for Biomedical Engineering
Published on: February 7, 2016
Shape-Memory and Mechanochromic Biocomposites from Keratin and Cellulose Nanocrystals
Xiaoyun Xu1, Zhuang Wang1, Qi Zhang1
1Department of Biomedical Engineering, City University of Hong Kong, Hong Kong S.A.R. 999077, China.
Abstract:
Shape-memory effects and mechanochromic properties in soft materials have attracted significant attention due to their potential applications in biomedical engineering. Herein, we use a simple strategy to integrate these two properties into a single biocomposite material, which is achieved by embedding cellulose nanocrystals (CNCs) into the keratin matrix (which is intrinsically shape morphable). Via the evaporation-induced self-assembly process, CNCs self-organize into a chiral nematic crystal structure with a specific pitch and are stabilized within the keratin matrix by hydrogen bonds. The physical cross-linking effect of CNCs significantly improves extensibility, tensile strength, and shape-memory recovery. During the deformation of keratin composite films, structure color variation from dark black to bright blue is observed, resulting from the variation of the CNC helical pitch that selectively reflects different wavelengths of polarized light to exhibit iridescence. This work presents dual-functional biocomposites in an eco-friendly method, which can be used as high-strain optical sensors.

