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Article Abstract

We report a semiconducting triindole-based discotic liquid crystal () functionalized with six -methylthiophenyl groups at its periphery. While initially a crystalline solid at room temperature, transitions to a columnar hexagonal mesophase upon heating and retains this supramolecular organization upon subsequent cooling, despite having only three flexible alkyl chains attached to the core's nitrogens. The incorporation of methylthio groups effectively hinders tight molecular packing, stabilizing the columnar arrangement of this disk-shaped molecule. Single crystal analysis confirmed the high tendency of this compound to organize into a columnar architecture and the role played by the methylthio groups in reinforcing such structure. The mesomorphic behavior of provides an opportunity for processing from its molten state. Notably, our research reveals significant differences in charge transport depending on the processing method, whether solution drop-casting or melt-based. shows hole mobility values averaging 3 × 10 cm V s when incorporated in diode-type devices from the isotropic melt and annealed at the mesophase temperature, estimated by SCLC (space-charge-limited current) measurements. However, when integrated into solution-processed organic field-effect transistors (OFETs), crystalline exhibits a hole mobility of 3 × 10 cm V s. The observed differences can be attributed to a beneficial supramolecular assembly achieved in the mesophase in spite of its lower order. These results emphasize the material's potential for applications in easy-to-process electronic devices and highlight the potential of methylthio moieties in promoting columnar mesophases.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11210202PMC
http://dx.doi.org/10.1021/acsaelm.4c00693DOI Listing

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