SWNT nano-engineered networks strongly increase charge transport in P3HT
Nicolas Boulanger1, Junchun Yu, David R Barbero
1Umeå Universitet, Institutionen för Fysik, Linnaeus väg 24, Umeå, Sweden. david.barbero@physics.umu.se.
Abstract:
We demonstrate the formation of arrays of 3D nanosized networks of interconnected single-wall carbon nanotubes (SWNTs) with well defined dimensions in a poly-3-hexylthiophene (P3HT) thin film. These novel nanotube nano-networks produce efficient ohmic charge transport, even at very low nanotube loadings and low voltages. An increase in conductivity between one and two orders of magnitude is observed compared to a random network. The formation of these nano-engineered networks is compatible with large area imprinting and roll to roll processes, which makes it highly desirable for opto-electronic and energy conversion applications using carbon nanotubes.


