Blending the Optical and Redox Properties of Oligoynes and Boron Difluoride Formazanates.

Angew Chem Int Ed Engl

Department of Chemistry and the Centre for Advanced Materials and Biomaterials Research (CAMBR), The University of Western Ontario, London, ON N6A 5B7, Canada.

Published: September 2022

AI Article Synopsis

  • Researchers used bulky redox-active BF formazanate dyes as end-caps to create stable symmetric and asymmetric oligoynes with up to 10 alkyne units.
  • The resulting oligoynes exhibit unique optical and redox properties, making them potentially useful for applications in organic electronics, and this method can be adapted for other functional end-caps.

Article Abstract

Oligoynes and polyynes are 1D chains of conjugated sp-hybridized carbon atoms consisting of alternating single and triple bonds. Their stability rapidly decreases with increasing chain length beyond only a few repeating units. Design strategies, such as the use of bulky end-capping groups, allow for their characterization and isolation while not contributing significantly to their physical properties. In this study, we incorporate redox-active BF formazanate dyes (BF ) as end-caps to prepare symmetric (BF -[C≡C] -BF ) and asymmetric (BF -[C≡C] -Si(iPr) ) families of oligoynes containing up to 10 alkyne units. In doing so, we introduce stable oligoynes that possess a blend of optical and redox properties that cannot be achieved by either oligoynes or BF formazanates individually (e.g., panchromatic absorption, multiple and tunable reversible redox waves). This approach is transferable to other functional end-caps to facilitate the preparation of π-conjugated materials with utility in the organic electronics arena.

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Source
http://dx.doi.org/10.1002/anie.202208502DOI Listing

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