Conformationally Driven Dual Fluorescence Properties of Higher Heteroacenes With Periodically Incorporated Boron Atoms

T Takeshi Yokochi (Laboratory for Chemistry and Life Science Institute of Integrated Research, Institute of Science Tokyo Yokohama Japan) H Hiromichi Yokoyama (Laboratory for Chemistry and Life Science Institute of Integrated Research, Institute of Science Tokyo Yokohama Japan) T Tetsuyoshi Tsukada (Laboratory for Chemistry and Life Science Institute of Integrated Research, Institute of Science Tokyo Yokohama Japan) H Hayato Sakai (Department of Chemistry, Faculty of Science and Technology) T Taku Hasobe (Department of Chemistry, Faculty of Science and Technology) T Takanori Fukushima Y Yoshiaki Shoji (Laboratory for Chemistry and Life Science)

Abstract

ABSTRACT Hexaboraheptacene ( B 6 ‐hept ), featuring a periodic arrangement of boron atoms, together with its shorter homologues tetraborapentacene ( B 4 ‐pent ) and diboraanthracene ( B 2 ‐ant ), were synthesized via cyclocondensation of o ‐bis(dihydroboryl)arenes. The reactive boron centers are effectively protected by 2,4,6‐triisopropylphenyl (Tip) groups, enabling handling under ambient conditions. As the number of boron bridges increases, the electron‐accepting ability as well as the multistep reversible redox properties are progressively enhanced. B 6 ‐hept exhibits pronounced dual fluorescence in solution, in which relative intensities depend on the excitation wavelength and solvent viscosity. DFT calculations suggest that this phenomenon originates from two interconvertible conformers, namely, the bent‐zigzag and twisted forms, which result from a delicate balance between the extended π‐system and the steric demands of the Tip groups. This interpretation is supported by the fact that B 4 ‐pent displays only weak dual emission, while B 2 ‐ant shows none. This study not only introduces a new class of heteroacenes with potential applications in optoelectronics and electrocatalysis, but also provides insight into steric‐design strategies for tuning the conformational landscapes of boron‐containing π‐systems.

Article Details

Volume / Issue Vol. 65, Issue 17
Published April 20, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (7)

T

Takeshi Yokochi

Laboratory for Chemistry and Life Science Institute of Integrated Research, Institute of Science Tokyo Yokohama Japan

H

Hiromichi Yokoyama

Laboratory for Chemistry and Life Science Institute of Integrated Research, Institute of Science Tokyo Yokohama Japan

T

Tetsuyoshi Tsukada

Laboratory for Chemistry and Life Science Institute of Integrated Research, Institute of Science Tokyo Yokohama Japan

H

Hayato Sakai

Department of Chemistry, Faculty of Science and Technology

T

Taku Hasobe

Department of Chemistry, Faculty of Science and Technology

T

Takanori Fukushima

Y

Yoshiaki Shoji

Laboratory for Chemistry and Life Science