Abstract
We report the electron-beam induced crosslinking of cinnamate-substituted polythiophene proceeding via excited state [2+2]-cycloaddition. Network formation in thin films is evidenced by infrared spectroscopy and film retention experiments. For the polymer studied herin, the electron-stimulated process appears to be superior to photo (UV)-induced crosslinking as it leads to less degradation. Electron beam lithography (EBL) patterns cinnamate-substituted polythiophene thin films on the nanoscale with a resolution of around 100 nm. As a proof of concept, we fabricated nanoscale organic transistors using doped and cross-linked P3ZT as contact fingers in thin film transistors.
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CITATION STYLE
Bojanowski, N. M., Huck, C., Veith, L., Strunk, K. P., Bäuerle, R., Melzer, C., … Bunz, U. H. F. (2022). Electron-beam lithography of cinnamate polythiophene films: conductive nanorods for electronic applications. Chemical Science, 13(26), 7880–7885. https://doi.org/10.1039/d2sc01867e
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