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(Angew. Chem. Int. Ed.) Multimodal Self-sustainable Autonomous Locomotions of Light-driven Seifert Ribbon Actuators based on Liquid Crystal Elastomers
作者:Nie, Z.; Wang, M.; Huang, S.; Liu, Z.; Yang, H.*
關(guān)鍵字:topology, Liquid Crystal Elastomer
論文來(lái)源:期刊
具體來(lái)源:Angewandte Chemie International Edition, 2023, 62, e202304081
發(fā)表時(shí)間:2023年

Multimodal self-sustainable autonomous loco-

motions integrated into one individual system, are high-

level

intelligent

behavioral

characteristics

of

living

organisms and are the scientific hotspot of bionic soft

actuators. Here, we report a light-fueled soft actuator

with multimodal self-sustainable movements based on a

Seifert ribbon bounded by a Hopf link. The Seifert

ribbon actuator can self-sense the illumination area

adjustment, and the actuation component becomes

either a discontinuous strip-like structure or a continu-

ous

toroidal

structure,

which

can

realize

adaptive

switches between self-sustained oscillatory and rotary

motions. The two motion modes are applied to the self-

oscillatory piezoelectric generation and self-rotational

work multiplication of cargo transport, respectively. The

unique smartness of Seifert surface topology advances

the level of actuation intelligence with broad implica-

tions

for

the

adaptability,

multifunctionality,

and

autonomy of soft robots.

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