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- W2903938436 abstract "It is commonly known that flexible structures and movable substituents are unfavorable for realizing intense luminescence with organic dyes. On the other hand, we show in this short review that excitation-driven boron complexes are promising platforms for obtaining stimuli-responsive luminescent materials with high sensitivity. Initially, we explained transformation of the valence of boron in heterofluorene from four to three-coordinate state through excitation-driven bond cleavage at the boron dative bond. The mechanism and stimuli-responsive luminescence with high sensitivity are illustrated. The next topic regards rational design of aggregation-induced emission (AIE)-active molecules, which are able to provide enhanced emission by aggregation. By employing theoretical calculations, it was possible to find a series of novel AIE-active skeletons from scratch. Stimuli-responsive luminescent chromism was also observed from the resulting molecules. The final topic is concerned with aryl–o-carborane dyads. It was recently found that rotation of the o-carborane unit proceeds triggered by photo-excitation. By regulating rotation behaviors, not only solid-state luminescence but also dual emission were obtained. The concept and several examples to offer applications of this new class of boron complexes are reviewed. The concept of excitation-driven boron complexes, which show potentially large structural transformation in the excited state, and their applications as functional luminescent materials are illustrated. Due to poor luminescent ability, these complexes have not been utilized as an optical material, meanwhile, recent reports suggest great versatility of these complexes as a platform for constructing stimuli-responsive luminescent materials with high sensitivity. We summarize recent progress in this review." @default.
- W2903938436 created "2018-12-22" @default.
- W2903938436 creator A5011132235 @default.
- W2903938436 creator A5036531859 @default.
- W2903938436 creator A5073553496 @default.
- W2903938436 date "2019-01-15" @default.
- W2903938436 modified "2023-10-17" @default.
- W2903938436 title "Concept of Excitation-Driven Boron Complexes and Their Applications for Functional Luminescent Materials" @default.
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