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Photoinduced Deformation of Crosslinked Liquid-Crystalline Polymer Film Oriented by a Highly Aligned Carbon Nanotube Sheet

Authors

  • Wei Wang,

    1. Department of Materials Science, Fudan University, 220 Handan Road, Shanghai 200433 (P. R. China)
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    • These authors contributed equally to this work.

  • Xuemei Sun,

    1. State Key Laboratory of Molecular Engineering of Polymers, Department of Macromolecular Science, and Laboratory of Advanced Materials, Fudan University (P. R. China)
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    • These authors contributed equally to this work.

  • Wei Wu,

    1. Department of Materials Science, Fudan University, 220 Handan Road, Shanghai 200433 (P. R. China)
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  • Prof. Huisheng Peng,

    Corresponding author
    1. State Key Laboratory of Molecular Engineering of Polymers, Department of Macromolecular Science, and Laboratory of Advanced Materials, Fudan University (P. R. China)
    • State Key Laboratory of Molecular Engineering of Polymers, Department of Macromolecular Science, and Laboratory of Advanced Materials, Fudan University (P. R. China)
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  • Prof. Yanlei Yu

    Corresponding author
    1. Department of Materials Science, Fudan University, 220 Handan Road, Shanghai 200433 (P. R. China)
    • Department of Materials Science, Fudan University, 220 Handan Road, Shanghai 200433 (P. R. China)
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  • Financial support from the NSFC (21134003, 50873028, 20904006, and 91027025), Ministry of Science and Technology of China (2009CB930400), DPHE (20100071110014), IRT0911, and Shanghai Rising-Star Program (11QH1400400) is gratefully acknowledged.

Abstract

original image

Biegsame Filme: Eine ausgerichtete Schicht von Kohlenstoffnanoröhren orientiert vernetzte flüssigkristalline Polymere durch einen einfachen Schmelzprozess (siehe Bild). Der entstehende Kompositfilm kann durch abwechselnde Bestrahlung mit UV- und sichtbarem Licht gebogen und begradigt werden. Der Film zeigt außerdem exzellente mechanische und elektrische Eigenschaften.

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