Journal of Materials Chemistry A · 2013 · 25 citations · 37 references
EngineeringMechanical EngineeringChemical ActuatorBiomedical EngineeringMicroactuatorOne-dimensional Linear ActuationSoft RoboticsMaterials ScienceElectroactive MaterialQuinone GroupsBiomimetic ActuatorActuationLarge StrainsSpring DoublingLinear Electrochemical ActuatorsElectrochemistryFlexible ElectronicsBioelectronicsActuators
The synthesis and performance of novel redox-controlled gel actuators are described. The gels are constructed with quinone groups that can be reversibly oxidised or reduced, producing a marked change in the swelling of the gel. The use of highly sterically hindered quinones means that they can be polymerised directly without protection. Incorporation of carbon nanotubes produces good electrical conductivity in the gel and even swelling. By using a mechanical biasing element such as a spring doubling as the electrode, one-dimensional linear actuation can be realised, with strains over 40%. The device is robust over many cycles, and is capable of producing a force of 30 kPa at potentials less than 1 V.
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Double‐Network Hydrogels with Extremely High Mechanical Strength
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Collapse of Gels and the Critical Endpoint
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Engineering, Polyacrylamide Gels, Protein Phase Separation +18
Collapse of Gels in an Electric Field
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Materials Science, Electroactive Material, Electrohydrodynamics +14
Phase Transitions in Ionic Gels
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