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Fused Octapyrrolyl Cyclooctatetraene with Large NIR-II Faraday Rotation

  • Daniel J. Martinez
  • , Molly C. Warndorf
  • , Avisek Dutta
  • , Harrison M. Bergman
  • , Jojo P. Joseph
  • , Peter Müller
  • , Paras N. Prasad
  • , Timothy M. Swager
  • Massachusetts Institute of Technology
  • SUNY Buffalo

Research output: Contribution to journalArticlepeer-review

2 Scopus citations

Abstract

The increased mechanical flexibility, solution processability, ease of fabrication, and high Verdet constants have made organic Faraday rotators a promising alternative to conventional inorganic magneto-optical (MO) materials. Despite this, organic Faraday rotators have not been developed to address near-infrared (NIR) MO applications, limiting their device applications. Here, we describe a three-step synthesis and MO characterization of a fused octapyrrolyl cyclooctatetraene (FOPCOT) which exhibits a record high Verdet constant of a small molecule in the NIR-II region. Notably, the cyclooctatetraene core is constructed in a three-step one-pot reaction whereby a N,N′-dipyrrolyl acetylene is generated and immediately reacted with Rosenthal’s complex to produce the corresponding zirconacycle intermediate in situ. The cascade is completed with a copper-mediated transmetalation that reductively eliminates to yield the octapyrrolyl cyclooctatetraene. This transformation offers a distinct alternative to conventional methods for pyrrole incorporation into polycyclic aromatic hydrocarbons. Stoichiometric oxidation with AgPF6affords the oxidized analogues FOPCOT+and FOPCOT2+, which display strong optical absorptions at 1743 and 1198 nm, respectively. Magnetic circular dichroism study on spin-coated thin films of FOPCOT2+yielded a maximum Verdet constant of −2.5 × 105deg T–1m–1at 1224 nm.

Original languageEnglish
Pages (from-to)35836-35842
Number of pages7
JournalJournal of the American Chemical Society
Volume147
Issue number39
DOIs
StatePublished - 2025

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