5 research outputs found

    Polyelectrolyte-in-ionic-liquid electrolytes

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    Novel polymer electrolyte materials based on a polyelectrolyte-in-ionic-liquid principle are described. A combination of a lithium 2-acrylamido-2-methyl-1-propanesulfonic acid (AMPSLi) and N,N&prime;-dimethylacrylamide (DMMA) are miscible with the ionic liquid, 1-ethyl-3-methylimidazolium dicyanamide (EMIDCA). EMIDCA has remarkably high conductivity (&ge;&thinsp;2&thinsp;&middot;&thinsp;10&minus;2 S&thinsp;&middot;&thinsp;cm&minus;1) at room temperature and acts as a good solvating medium for the polyelectrolyte. At compositions of AMPSLi less than or equal to 75 mol-% in the copolymer (P(AMPSLi-co-DMAA)), the polyelectrolytes in EMIDCA are homogeneous, flexible elastomeric gel materials at 10&thinsp;&minus;&thinsp;15 wt.-% of total polyelectrolyte. Conductivities higher than 8&thinsp;&middot;&thinsp;10&minus;3 S&thinsp;&middot;&thinsp;cm&minus;1 at 30&thinsp;&deg;C have been achieved. The effects of the monomer composition, polyelectrolyte concentration, temperature and lithium concentration on the ionic conductivity have been studied using thermal and conductivity analysis, and pulsed field gradient nuclear magnetic resonance techniques.<br /

    Solid state actuators based on polypyrrole and polymer-in-ionic liquid electrolytes

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    Novel polymer-in-ionic liquid electrolytes (PILEs) have been developed for solid state electrochemical actuators based on polypyrrole. The active polymer electrodes are readily oxidized/reduced without degradation in the PILE. It was found that the actuator cycle life is significantly enhanced in the PILE as is the &lsquo;shelf life&rsquo; of the device.<br /

    Zwitterionic additives for electrochemical devices

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    Zwitterionic electrolytes such as N-methyl-N-(n-butanesulfonate) pyrrolidinium are added to electrolyte compositions such as polyelectrolytes, ionic liquid electrolytes and molecular solvent electrolytes (for example, lithium hexafluorophosphate) to improve conductivity of the ion species, such as lithium, in the electrolyte. This has application to lithium based energy storage devices such as batteries and supercapacitors
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