Ambipolar conjugated ladder polymers by room-temperature Knoevenagel polymerization.

Chem Sci

Key Laboratory of Environmentally Friendly Chemistry and Applications of Ministry of Education, Key Laboratory of Polymeric Materials and Application Technology of Hunan Province, College of Chemistry, Xiangtan University Xiangtan 411105 P. R. China

Published: July 2024

Two soluble conjugated ladder polymers (cLPs), decorated with multiple electron-poor species (, cyano groups, fused pentagons, and N-heterocyclic rings), have been synthesized from the newly developed tetraketo-functionalized double aza[5]helicene building blocks using a single-step Knoevenagel polycondensation strategy. This facile approach features mild conditions (, room temperature) and high efficiency, allowing us to quickly access a nonalternant ladder-like conjugated system with the formation of multicyano substituents in the backbone. Analysis by H NMR, FT-Raman, and FT-IR spectra confirms the successful synthesis of the resulting cLPs. The combination of theoretical calculations and experimental characterizations reveals that the slightly contorted geometry coupled with a random assignment of - and -isomeric repeating units in each main chain contributes to improving the solubility of such rigid, multicyano nanoribbon systems. Apart from outstanding thermal stability, the resulting cLPs exhibit attractive red fluorescence, excellent redox properties, and strong π-π interactions coupled with orderly face-on packing in their thin-film states. They are proven to be the first example of ambipolar cLPs that show satisfactory hole and electron mobilities of up to 0.01 and 0.01 cm V s, respectively. As we demonstrate, the Knoevenagel polycondensation chemistries open a new window to create complex and unique ladder-like nanoribbon systems under mild reaction conditions that are otherwise challenging to achieve.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11268504PMC
http://dx.doi.org/10.1039/d4sc03222eDOI Listing

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