3D-Helical Artificial Chromatophore for Thermally-Tunable Fluorescence and Omnidirectional Stealth Switching.xlsx
收藏Figshare2025-05-23 更新2026-04-08 收录
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https://figshare.com/articles/dataset/3D-Helical_Artificial_Chromatophore_for_Thermally-Tunable_Fluorescence_and_Omnidirectional_Stealth_Switching_xlsx/29134598/1
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资源简介:
This paper presents a bio-inspired thermochromic actuator that mimics natural camouflage systems by switching between visible and stealth modes in response to temperature changes. Thus, the innovation of this research involves a yarn-based artificial muscle with a helical structure that enables rapid switching between visible and stealth modes through vertical contraction and expansion. Unlike previous systems that rely on mechanical stimuli, this design uses thermal energy to trigger dynamic color changes. Selective surface coating with Rhodamine B and titanium dioxide (TiO₂) enables differential photo-reactivity to ultraviolet-visible (UV) light and forms the basis for rapid and reversible chromatic transitions. When exposed to an external thermal impulse, the artificial chromatophore—measuring 1400 μm in thickness—can rotate up to 309°, exhibit a negative strain of 84.6%, and reach an average actuation velocity of 297.4 μm/s/°C. This performance is among the fastest reported for color-tunable materials. Notably, the system’s thermally induced color change is effective not only in air but also in completely different environments, including underwater. This advanced approach is expected to broaden the application of adaptive materials in various industrial industries, including space and deep-sea sensors, military stealth and adaptive camouflage, temperature-regulating smart textiles for nighttime use, and smart ocean buoys.
提供机构:
Jun Kim, Hyeon; Won Lee, Seok; Kim, Dojin; Lee, Duck Weon
创建时间:
2025-05-23



