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- W3162867248 abstract "Ultrabroadband light absorbers are attracting increasing interest for applications in energy harvesting, photodetection, self-regulated devices or soft robotics. However, current absorbers show detrimental insufficient absorption spectral range, or light angle and polarization dependence. Here we show that the unexplored optical properties of highly-damped plasmonic materials combined with the infrared absorption of thin polymer films enable developing ultrabroadband light-absorbing soft metamaterials. The developed metamaterial, composed of a nanostructured Fe layer mechanically coupled to a thin polydimethylsiloxane (PDMS) film, shows unprecedented ultrabroadband and angle-independent optical absorption (averaging 84% within 300–18000 nm). The excellent photothermal efficiency and large thermal-expansion mismatch of the metamaterial is efficiently transformed into large mechanical deflections, which we exploit to show an artificial iris that self-regulates the transmitted light power from the ultraviolet to the long-wave infrared, an untethered light-controlled mechanical gripper and a light-triggered electrical switch." @default.
- W3162867248 created "2021-05-24" @default.
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- W3162867248 date "2021-06-01" @default.
- W3162867248 modified "2023-10-16" @default.
- W3162867248 title "Ultrabroadband light absorbing Fe/polymer flexible metamaterial for soft opto-mechanical devices" @default.
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- W3162867248 doi "https://doi.org/10.1016/j.apmt.2021.101052" @default.
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