Directional growth of polypyrrole and polythiophene wires
Date
2009-01-23Author
Thapa, Prem S.
Yu, Deok Jin
Wicksted, James P.
Hadwiger, Jeffrey A.
Barisci, Joseph N.
Baughman, Ray H.
Flanders, Bret N.
Metadata
Show full item recordAbstract
This work establishes an innovative electrochemical approach to the template-free growth of conducting polypyrrole and polythiophene wires along predictable interelectrode paths up to 30 um in length. These wires have knobby structures with diameters as small as 98 nm. The conductivity of the polypyrrole wires is 0.5+/=0.3 S cm-1; that of the polythiophene wires is 7.6+/=0.8 S cm-1. Controlling the growth path enables fabrication of electrode-wire-target assemblies where the target is a biological cell in the interelectrode gap. Such assemblies are of potential use in cell stimulation studies.
Citation
Thapa, P. S., Yu, D. J., Wicksted, J. P., Hadwiger, J. A., Barisci, J. N., Baughman, R. H., & Flanders, B. N. (2009). Directional growth of polypyrrole and polythiophene wires. Applied Physics Letters, 94(3), Article 033104. https://doi.org/10.1063/1.3072611