| Literature DB >> 24046497 |
Kamran Ali1, Ullrich Pietsch, Souren Grigorian.
Abstract
Organic field-effect transistors (OFETs) were fabricated by depositing a regioregular poly(3-hexylthiophene) (P3HT) active layer using a dip-coating method. The field-effect mobility in OFETs depends on chain orientation and crystallinity and is related to direction and withdrawal speed with respect to the source/drain orientation. In this paper, how to control the structural and transport properties of P3HT films by coating parallel and perpendicular to the dipping direction is demonstrated. X-ray diffraction curves taken in the perpendicular direction exhibit a higher degree of crystalline ordering and edge-on conformation compared with those in the parallel direction; this finding correlates with the directional anisotropy of the OFET mobility. Both structural anisotropy and transport properties are enhanced upon thermal treatment.Entities:
Keywords: electrical anisotropy; grazing-incidence X-ray diffraction; structural anisotropy
Year: 2013 PMID: 24046497 PMCID: PMC3769064 DOI: 10.1107/S0021889813004718
Source DB: PubMed Journal: J Appl Crystallogr ISSN: 0021-8898 Impact factor: 3.304
Figure 1Grazing-incidence two-dimensional patterns in the directions perpendicular (a) and parallel (b) to the dipping direction.
Figure 2Out-of-plane (a) and in-plane (b) line profiles perpendicular and parallel to the dipping direction, (c) out-of-plane profile of the 100 peaks for dip-coated films with three withdrawal speeds of 1, 0.05 and 0.008 mm s−1, and (d) in situ annealing of the 100 peak for the dip-coated sample with 0.008 mm s−1 withdrawal speed.
P3HT OFET mobilities as a function of withdrawal speed and temperature for conductive polymer channels perpendicular and parallel to the dipping direction
| Dipping direction | Speed (mm s−1) | Temperature | ||
|---|---|---|---|---|
| 0.5 | 0.8 | 1.0 | ||
| Parallel | 2.83 × 10−4 | 4.54 × 10−5 | 1.85 × 10−5 | Room |
| Perpendicular | 6.42 × 10−4 | 2.67 × 10−4 | 3.41 × 10−6 | Room |
| Parallel | 4.65 × 10−4 | 5.38 × 10−5 | 3.11 × 10−5 | 453 K |
| Perpendicular | 1.81 × 10−3 | 1.49 × 10−3 | 4.04 × 10−5 | 453 K |