有機合成化学協会誌
Online ISSN : 1883-6526
Print ISSN : 0037-9980
ISSN-L : 0037-9980
総説および総合論文
骨格炭素のアザ置換による狭エネルギーギャップ化を基盤とした近赤外光学材料開発
田中 一生権 正行伊藤 峻一郎
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ジャーナル 認証あり

2024 年 82 巻 3 号 p. 269-278

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The new strategy for modulating the energy levels of conjugated molecules without extending the π-conjugated system is described. In the distribution of frontier molecular orbitals (FMOs) which can be depicted with quantum calculation, when one of FMOs is distributed on the skeletal carbon, each of them is defined as the isolated highest occupied molecular orbital (HOMO) or the lowest unoccupied molecular orbital (LUMO). By substituting skeletal carbon to nitrogen (aza-substitution) at the isolated FMO, we found that efficient and selective lowering of the energy level of one of FMOs is realized. In this review, we explain recent progresses on the developments of near-infrared (NIR) light-absorbing and/or emitting materials based on the selective lowering of LUMO energy levels through the aza-substitution at the isolated LUMO. Initially, the representative examples on the regulation of energy levels of FMOs are illustrated with azaphenalene derivatives. Next, aggregation-induced emission (AIE) and/or crystallization-induced emission (CIE)-active complexes with longer wavelength emission are explained. Furthermore, the series of conjugated polymers having NIR-luminescent properties were obtained. The mechanism and applications for advanced optical materials are described. We show here that aza-substitution at the isolated LUMO is a powerful strategy for controlling the energy level of conjugated systems and creating superior functional materials.

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