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A New Platform of B/N-Doped Cyclophanes: Access to a π-Conjugated Block-Type B 3 N 3 Macrocycle with Strong Dipole Moment and Unique Optoelectronic Properties.

Pengfei LiDaisuke ShimoyamaNiu ZhangYawei JiaGuofei HuChenglong LiXiaodong YinNan WangFrieder JäklePangkuan Chen
Published in: Angewandte Chemie (International ed. in English) (2022)
We herein describe a new design principle to achieve B/N-doped cyclophane where an electron-donor block of three triarylamines (Ar 3 N) and an acceptor block of three triarylboranes (Ar 3 B) are spatially separated on opposite sides of the π-extended ring system. DFT computations revealed the distinct electronic structure of the block-type macrocycle MC-b-B3N3 with a greatly enhanced dipole moment and reduced HOMO-LUMO energy gap in comparison to its analogue with alternating B and N sites, MC-alt-B3N3. The unique arrangement of borane acceptor Ar 3 B and amine donor Ar 3 N components in MC-b-B3N3 induces exceptionally strong intramolecular charge transfer in the excited state, which is reflected in a largely red-shifted luminescence at 612 nm in solution. The respective linear open-chain oligomer L-b-B3N3 was also synthesized for comparison. Our new approach to donor-acceptor macrocycles offers important fundamental insights and opens up a new avenue to unique optoelectronic materials.
Keyphrases
  • energy transfer
  • quantum dots
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  • highly efficient
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  • single cell
  • molecular dynamics
  • visible light