Actuation behavior of multilayer graphene nanosheets/polydimethylsiloxane composite films

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Abstract

The graphene nanosheets (GNS)/polydimethylsiloxane (PDMS) composite films with out-of-plane dielectric actuation behavior were prepared through a layer-by-layer spin coating process. The GNS-PDMS/PDMS composite films with 1~3 layers of GNS-PDMS films were spin coated on top of the PDMS film. The dielectric, mechanical, and electromechanical actuation properties of the composite films were investigated. The dielectric constant of the GNS-PDMS3/PDMS composite film at 1 kHz is 5.52, which is 1.7 times that of the GNS-PDMS1/PDMS composite film. The actuated displacement of the GNS-PDMS/PDMS composite films is greatly enhanced by increasing the number of GNS-PDMS layers. This study provides a novel alternative approach for fabricating high-performance actuators with out-of-plane actuation behavior.

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Zhang, C., Zhai, T., Zhan, C., Fu, Q., & Ma, C. (2018). Actuation behavior of multilayer graphene nanosheets/polydimethylsiloxane composite films. Polymers, 10(11). https://doi.org/10.3390/polym10111243

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