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Published on: March 6, 2014
Bioinspired Trichromatic Photonic Skins for High-Resolution Underwater Motion Tracking
Yonghao Wang1, Hanwen Li1, Shaoqing Luo2
1Key Laboratory of Optic-Electric Sensing and Analytical Chemistry for Life Science, MOE, Shandong Key Laboratory of Biochemical Analysis, Key Laboratory of Analytical Chemistry for Life Science in Universities of Shandong, College of Chemistry and Molecular Engineering, Qingdao University of Science and Technology, Qingdao 266042, China.
Abstract:
Incorporating magnetically responsive nanostructures into flexible elastomers enables the rapid construction of dynamically tunable photonic skins. However, existing systems fail to achieve pure-color-bending recognition due to monochromatic limitations. We present a chameleon-inspired trichromatic photonic skin (TPS) through the magnetic-field-guided assembly of Fe3O4@SiO2 nanoclusters within polyacrylamide hydrogels to miniaturized sizes. The TPS uniquely decouples mechanical stimuli (stretching, pressure, and bending) into distinct structural color pixels via independent peak shifting in the reflection spectra, of which the precision surpasses conventional single-color systems. Moreover, mask-assisted ultraviolet light polymerization further enables programmable pixelation for underwater sensing and encryptions. This multiparameter responsiveness allows real-time optical tracking of underwater motions, including shark locomotion and finger articulation. Our strategy establishes a single-component paradigm for creating intelligent multichannel optical interfaces with fine color resolutions.

