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Enhanced Mobility of Poly(3-hexylthiophene) Transistors by Spin-Coating from High-Boiling-Point Solvents

Chemistry of Materials · 2004 · Vol. 16(23) · pp. 4772–4776
Jui-Fen ChangBaoquan SunDag W. BreibyM. NielsenTheis I. SøllingMark GilesIain McCullochHenning Sirringhaus

Abstract

Chloroform is a general solvent for poly(3-hexylthiophene) (P3HT) active layers in field-effect transistors. However, its low boiling point and rapid evaporation limit the time for crystallization during the spin-coating process, and field-effect mobilities achieved for P3HT films spin-coated from chloroform are typically on the order of 0.01 cm2/(V s). Here we investigate a range of solvents with higher boiling points. We find that 1,2,4-trichlorobenzene with good solubility and a high boiling point significantly improves the field-effect mobilities up to 0.12 cm2/(V s) with on:off ratios of 106. By controlling the microstructure through the choice of solvent while keeping the molecular weight fixed, we observe a clear correlation between the field-effect mobility and the degree of microcrystalline order as measured by X-ray diffraction, as well as the strength of polaronic relaxation of charge carriers in the accumulation layer as measured by optical spectroscopy of field-induced charge.

Organic Electronics and PhotovoltaicsOrganic Light-Emitting Diodes ResearchPerovskite Materials and ApplicationsSpin coatingMaterials scienceBoiling pointCrystallizationEvaporationMicrocrystallineBoilingSolubilityAnalytical Chemistry (journal)Coating

Funding

  • Engineering and Physical Sciences Research Council
Citations
942
FWCI
30.66
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