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Light‐fueled Non‐reciprocal Self‐oscillators for Fluidic Transportation and Coupling

Deng, Zixuan; Zhang, Hang; Priimägi, Arri; Zeng, Hao (2022-03-21)

 
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Light_Fueled_Nonreciprocal_.pdf (1.716Mt)
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Deng, Zixuan
Zhang, Hang
Priimägi, Arri
Zeng, Hao
21.03.2022

Advanced Materials
2209683
doi:10.1002/adma.202209683
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Julkaisun pysyvä osoite on
https://urn.fi/URN:NBN:fi:tuni-202301161402

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Peer reviewed
Tiivistelmä
Light-fueled self-oscillators based on soft actuating materials have triggered novel designs for small-scale robotic constructs that self-sustain their motion at non-equilibrium states and possess bioinspired autonomy and adaptive functions. However, the motions of most self-oscillators are reciprocal, which hinders their use in sophisticated biomimetic functions such as fluidic transportation. Here, an optically powered soft material strip that can perform nonreciprocal, cilia-like, self-sustained oscillation under water is reported. The actuator is made of planar-aligned liquid crystal elastomer responding to visible light. Two laser beams from orthogonal directions allow for piecewise control over the strip deformation, enabling two self-shadowing effects coupled in one single material to yield nonreciprocal strokes. The nonreciprocity, stroke pattern and handedness are connected to the fluidic pumping efficiency, which can be controlled by the excitation conditions. Autonomous microfluidic pumping in clockwise and anticlockwise directions, translocation of a micro-object by liquid propulsion, and coupling between two oscillating strips through liquid medium interaction are demonstrated. The results offer new concepts for non-equilibrium soft actuators that can perform bio-like functions under water.
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Kalevantie 5
PL 617
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Kalevantie 5
PL 617
33014 Tampereen yliopisto
oa[@]tuni.fi | Tietosuoja | Saavutettavuusseloste