A dynamic thermoregulatory material inspired by squid skin

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Abstract

Effective thermal management is critical for the operation of many modern technologies, such as electronic circuits, smart clothing, and building environment control systems. By leveraging the static infrared-reflecting design of the space blanket and drawing inspiration from the dynamic color-changing ability of squid skin, we have developed a composite material with tunable thermoregulatory properties. Our material demonstrates an on/off switching ratio of ~25 for the transmittance, regulates a heat flux of ~36 W/m2 with an estimated mechanical power input of ~3 W/m2, and features a dynamic environmental setpoint temperature window of ~8 °C. Moreover, the composite can manage one fourth of the metabolic heat flux expected for a sedentary individual and can also modulate localized changes in a wearer’s body temperature by nearly 10-fold. Due to such functionality and associated figures of merit, our material may substantially reduce building energy consumption upon widespread deployment and adoption.

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Leung, E. M., Colorado Escobar, M., Stiubianu, G. T., Jim, S. R., Vyatskikh, A. L., Feng, Z., … Gorodetsky, A. A. (2019). A dynamic thermoregulatory material inspired by squid skin. Nature Communications, 10(1). https://doi.org/10.1038/s41467-019-09589-w

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