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Electromechanical actuators based

Baughman RH, Shacklette LW, Elsenbaumer RL, Plichta EJ, Becht C (1991) Micro electromechanical actuators based on conducting polymers. In Lazarev PI (ed) Molecular electronics. Kluwer, Dordrecht, pp 267-289... [Pg.315]

Kosidlo U, et al (2013) Nanocarbon based ionic actuators-a review. Smart Mater Struct 22 104022 Li J, et al (2011) Superfest-response and ultrahigh-power-density electromechanical actuators based on hierarchal carbon nanotube electrodes and chitosan. Nano Lett 11 4636-4641 Lima MD, et al (2012) Electrically, chemically, and photonically powered torsional and tensile actuation of hybrid carbon nanotube yam muscles. Science 338 928-932 Liu Q, et al (2014) Nanostructured carbon materials based electrothermal air pump actuators. Nanoscale 6 6932-6938... [Pg.452]

Takeuchia I, Asakaa K, Kiyoharaa K et al (2009) Electromechanical behavior of fully plastic actuators based on bucky gel containing various internal ionic liquids. Electrochim Acta 54 1762-1768... [Pg.431]

J. Ding, D. Zhou, G. Spinks, G. Wallace, D. Forsyth, M. Fors)hh, and D. MacFarlane, Use of ionic liquids as electrolytes in electromechanical actuator systems based on inherently conducting polymers, Chem. Mater., 15 (12), 2392-2398 (2003). [Pg.628]

Tangborihoon N, Datsanae S, Onthong A, Kunanuruksapong R, Sirivat A (2013) Electromechanical responses of dielectric elastomer composite actuators based on natural rabher and alumina. J Elastom Plast 45 143... [Pg.421]

FIGURE 8.4 Electromechanically driving actuators based on a novel electromagnetic mechanism. Schematic illustration to the helical assembly of CNTs into helically primary and secondary fibers withcxit any guest materials. [Pg.301]

Hu,Y, Chen, W, Lu, L.H., Liu, J.H., Chang, C.R., 2010. Electromechanical actuation with controllable motion based on a single-waUed carbon nanotube and natural biopolymer composite. ACS Nano 4,... [Pg.318]

Hutchison, A.S., et al. 2000. Development of polypyrrole-based electromechanical actuators. Synth... [Pg.346]

Ding, J., et al. 2003. Use of ionic liquids as electrolytes in electromechanical actuator systems based on inherently conducting polymers. Chem Mater 15 2392. [Pg.1411]

Hiamtup, P. Sirivat, A. Jamieson, A. M., Electromechanical Response of a Soft and Flexible Actuator Based on Polyaniline Particles Embedded in a Cross-Linked Poly(dimethylsiloxane) Network. Mater. Sci. Eng., Part C 2008, 28,1044-1051. [Pg.110]


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See also in sourсe #XX -- [ Pg.301 ]




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