Publication | Open Access
Pyrene-Fused Poly-Aromatic Regioisomers: Synthesis, Columnar Mesomorphism, and Optical Properties
12
Citations
59
References
2023
Year
π-Extended pyrene compounds possess remarkable luminescent and semiconducting properties and are being intensively investigated as electroluminescent materials for potential uses in organic light-emitting diodes, transistors, and solar cells. Here, the synthesis of two sets of pyrene-containing π-conjugated polyaromatic regioisomers, namely 2,3,10,11,14,15,20,21-octaalkyloxypentabenzo[<i>a</i>,<i>c</i>,<i>m</i>,<i>o</i>,<i>rst</i>]pentaphene (<b>BBP</b><i>n</i>) and 2,3,6,7,13,14,17,18-octaalkyloxydibenzo[<i>j</i>,<i>tuv</i>]phenanthro [9,10-<i>b</i>]picene (<b>DBP</b><i>n</i>), is reported. They were obtained using the Suzuki-Miyaura cross-coupling in tandem with Scholl oxidative cyclodehydrogenation reactions from the easily accessible precursors 1,8- and 1,6-dibromopyrene, respectively. Both sets of compounds, equipped with eight peripheral aliphatic chains, self-assemble into a single hexagonal columnar mesophase, with one short-chain <b>BBP</b><i>n</i> homolog also exhibiting another columnar mesophase at a lower temperature, with a rectangular symmetry; <b>BBP</b><i>n</i> isomers also possess wider mesophase ranges and higher mesophases' stability than their <b>DBP</b><i>n</i> homologs. These polycyclic aromatic hydrocarbons all show a strong tendency of face-on orientation on the substrate and could be controlled to edge-on alignment through mechanical shearing of interest for their implementation in photoelectronic devices. In addition, both series <b>BBP</b><i>n</i> and <b>DBP</b><i>n</i> display green-yellow luminescence, with high fluorescence quantum yields, around 30%. In particular, <b>BBP</b><i>n</i> exhibit a blue shift phenomenon in both absorption and emission with respect to their <b>DBP</b><i>n</i> isomers. DFT results were in good agreement with the optical properties and with the stability ranges of the mesophases by confirming the higher divergence from the flatness of <b>DBP</b><i>n</i> compared with <b>BBP</b><i>n</i>. Based on these interesting properties, these isomers could be potentially applied not only in the field of fluorescent dyes but also in the field of organic photoelectric semiconductor materials as electron transport materials.
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