Artificial Muscle Material with Fast Electroactuation under Neutral pH Conditions

A novel artificial muscle material based on an acrylic acid/acrylamide hydrogel blended with a conductive polypyrrole/carbon black composite was prepared. The material was optimized in terms of its electroactuation response by varying the acrylic acid content, the blending concentration of the condu...

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Veröffentlicht in:Chemistry of materials 2004-06, Vol.16 (12), p.2499-2502
Hauptverfasser: Moschou, Elizabeth A, Peteu, Serban F, Bachas, Leonidas G, Madou, Marc J, Daunert, Sylvia
Format: Artikel
Sprache:eng
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Zusammenfassung:A novel artificial muscle material based on an acrylic acid/acrylamide hydrogel blended with a conductive polypyrrole/carbon black composite was prepared. The material was optimized in terms of its electroactuation response by varying the acrylic acid content, the blending concentration of the conductive composite, and the intensity of the electric field. The artificial muscle material showed a fast and reversible electroactuation when a low potential was applied. Further, the artificial muscle was incorporated into a microfabricated pumping device that exhibited reproducible flow rates, thus demonstrating its potential usefulness in bio-micro-electro−mechanical systems (BioMEMS) applications.
ISSN:0897-4756
1520-5002
DOI:10.1021/cm049921p