Synthesis and optical properties of dithieno-1,4-thiaborins bearing electron-donating amino groups

Author:

Agou Tomohiro1,Hayama Shota2,Takano Naoya2,Yamada Shigeyuki3,Konno Tsutomu3,Oshiki Toshiyuki4,Komatsuzaki Hidehito5,Fukumoto Hiroki2

Affiliation:

1. Department of Material Science, Graduate School of Science, University of Hyogo , 7-3-1 Kouto, Kamigori-cho, Ako-gun , Hyogo 678-1297, Japan

2. Department of Quantum Beam Science, Graduate School of Science and Engineering, Ibaraki University , 4-12-1 Naka-narusawa , Hitachi, Ibaraki 316-8511, Japan

3. Faculty of Molecular Chemistry and Engineering, Kyoto Institute of Technology , Matsugasaki, Sakyo-ku , Kyoto 6060-8585, Japan

4. Department of Applied Chemistry, Okayama University , 3-1-1 Tsushima-naka , Okayama 700-8530, Japan

5. Deparatment of Industrial Engineering, National Institute of Technology (KOSEN), Ibaraki College , 866 Nakane , Hitachinaka, Ibaraki 312-0011, Japan

Abstract

Abstract Dibenzo-1,4-heteraborins and their π-extended derivatives have been paid increased attention to because of their potential as optical and electronic functional materials such as organic electroluminescence emitters. However, 1,4-heteraborin compounds with heteroaromatic ring systems remain scarce, even though Liu et al. recently reported the synthesis, properties, and functionalization of dithieno-1,4-thiaborins (DTTBs). In this work, DTTBs with 10H-phenothiazine-10-yl (Pz), 9H-carbazol-9-yl (Cz), and p-(Ph2N)C6H4 groups as electron-donating amino groups at the α-positions of their thiophene moieties were synthesized using palladium-catalyzed coupling reactions. X-ray crystallographic analysis revealed the molecular structure of a DTTB substituted with Pz groups. This analysis showed that the 2 Pz moieties adopted extra (quasi-axial) conformations. The Cz- and p-(Ph2N)C6H4-substituted DTTBs showed red-shifted absorption and emission when compared to the original DTTBs. This shift is due to donor–acceptor interactions between the amino groups and the DTTB cores. The Pz-substituted DTTB exhibited dual fluorescence emissions, originating from the locally excited (LE) and twisted intramolecular charge transfer (TICT) states. The intensity and nature of these emissions varied based on solvent polarity, temperature, and viscosity, suggesting the potential of the Pz-substituted DTTB to act as a fluorescent environment sensor.

Funder

JSPS

Hitachi Global Foundation

Shin-Sozai Joho Zaidan Grant

Murata Science Foundation

Publisher

Oxford University Press (OUP)

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