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Shape memory nanocomposite fibers for untethered high-energy microengines

  • Classic rotating engines are powerful and broadly used but are of complex design and difficult to miniaturize. It has long remained challenging to make large-stroke, high-speed, high-energy microengines that are simple and robust. We show that torsionally stiffened shape memory nanocomposite fibers can be transformed upon insertion of twist to store and provide fast and high-energy rotations. The twisted shape memory nanocomposite fibers combine high torque with large angles of rotation, delivering a gravimetric work capacity that is 60 times higher than that of natural skeletal muscles. The temperature that triggers fiber rotation can be tuned. This temperature memory effect provides an additional advantage over conventional engines by allowing for the tunability of the operation temperature and a stepwise release of stored energy.

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Author details:Jinkai YuanORCiD, Wilfrid NeriORCiD, Cecile ZakriORCiD, Pascal MerzeauORCiD, Karl KratzORCiD, Andreas LendleinORCiDGND, Philippe PoulinORCiD
DOI:https://doi.org/10.1126/science.aaw3722
ISSN:0036-8075
ISSN:1095-9203
Pubmed ID:https://pubmed.ncbi.nlm.nih.gov/31296766
Title of parent work (English):Science
Publisher:American Assoc. for the Advancement of Science
Place of publishing:Washington
Publication type:Article
Language:English
Date of first publication:2019/07/12
Publication year:2019
Release date:2021/01/07
Volume:365
Issue:6449
Number of pages:39
First page:155
Last Page:158
Funding institution:Helmholtz AssociationHelmholtz Association
Organizational units:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Chemie
DDC classification:5 Naturwissenschaften und Mathematik / 54 Chemie / 540 Chemie und zugeordnete Wissenschaften
Peer review:Referiert
License (German):License LogoCC-BY - Namensnennung 4.0 International
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