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March 29, 2018Science538 citationsOpen Access

Adaptive infrared-reflecting systems inspired by cephalopods

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CXChengyi XuGŞGeorge ŞtiubianuAGAlon A. Gorodetsky

Key Points

  • To develop adaptive materials capable of dynamically tuning infrared reflectance in response to external stimuli, overcoming limitations of conventional static infrared-reflecting systems.
  • Designed and fabricated adaptive infrared-reflecting platforms modeled after the dynamic coloration and skin structures of cephalopods.
  • Assessed system metrics including actuation speed, operating temperature, spectral range tunability, angular dependence, mechanical robustness, and cyclic durability.
  • Engineered bioinspired platforms that exhibit rapid response times, low working temperatures, broad spectral tunability, and minimal angular dependence.
  • Confirmed mechanical robustness, stability across repeated actuation cycles, autonomous functionality, and suitability for scalable patterning and manufacturing.

Abstract

Materials and systems that statically reflect radiation in the infrared region of the electromagnetic spectrum underpin the performance of many entrenched technologies, including building insulation, energy-conserving windows, spacecraft components, electronics shielding, container packaging, protective clothing, and camouflage platforms. The development of their adaptive variants, in which the infrared-reflecting properties dynamically change in response to external stimuli, has emerged as an important unmet scientific challenge. By drawing inspiration from cephalopod skin, we developed adaptive infrared-reflecting platforms that feature a simple actuation mechanism, low working temperature, tunable spectral range, weak angular dependence, fast response, stability to repeated cycling, amenability to patterning and multiplexing, autonomous operation, robust mechanical properties, and straightforward manufacturability. Our findings may open opportunities for infrared camouflage and other technologies that regulate infrared radiation.

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Cite This Study

Xu et al. (2018) studied this question.

synapsesocial.com/papers/69db189178a3e0e288684bc0https://doi.org/10.1126/science.aar5191
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