4.8 Review

Recent progresses in the mechanistic studies of aggregation-induced emission-active boron complexes and clusters

期刊

COORDINATION CHEMISTRY REVIEWS
卷 472, 期 -, 页码 -

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.ccr.2022.214779

关键词

Boron; Aggregation-induced emission; Carborane; Luminochromism

资金

  1. JSPS KAKENHI
  2. [JP21H02001]
  3. [JP21K19002]

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This review focuses on the recent developments of boron-containing compounds with aggregation-induced emission properties, emphasizing the role of boron in molecular motions in the excited state. It explores the optical properties of boron complexes with different types of dative bonds and their applications in stimuli-responsive polymers and sensors.
We herein review the recent progresses in the development of boron-containing compounds with aggregation-induced emission (AIE) properties. In particular, the contribution of boron to molecular motions in the excited state is mainly focused in this review. Initially, the series of boron complexes with bidentate ligands are surveyed. We will explain their optical properties by classifying into three groups having different types of the dative bonds, such as B-O and/or B-N. As an application, stimuli-responsive polymers and film-type sensors are introduced. Next, we recently found that the tridentate ligands are a promising platform for constructing AIE-active complexes. Influence of skeletal distortions on mechanical motions in the excited state followed by AIE behaviors are explained. Moreover, several examples on the application to near-infrared (NIR)-luminescent materials are described. Finally, we also mention aromatics-connected boron cluster compounds, o-carboranes. Because of preferable structural features of o-carboranes for avoiding aggregation-caused quenching (ACQ) and structural relaxation in the excited state, aryl-modified o-carborane dyads and triads often show not only AIE and crystallization-induced emission (CIE) but also stimuli-responsive luminochromic behaviors. From recent works, these unique luminescent properties and detailed mechanism in o-carborane materials are explained.(c) 2022 Elsevier B.V. All rights reserved.

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