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A new red fluorophore with aggregation enhanced emission by an unexpected "One-step" protocol.


ABSTRACT: In this work, a triphenylamine-benzothiadiazole-based new fluorophore is obtained from a facile "one-step" protocol. A possible reduction mechanism is proposed, and an amine containing α-H plays a key role in the reduction reaction. The resultant product A1H2 exhibits bright red emission in solid state, with an absolute quantum yield of 44.5%. Aggregation induced emission enhancement of A1H2 is also observed with the increased water fraction in THF-H2O mixture. The nanoparticles of A1H2 reveal good stability and biocompatibility, which are successfully applied in cellular cytoplasm imaging.

SUBMITTER: Wang R 

PROVIDER: S-EPMC9080569 | biostudies-literature | 2018 May

REPOSITORIES: biostudies-literature

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A new red fluorophore with aggregation enhanced emission by an unexpected "One-step" protocol.

Wang Rui R   Hou Meili M   Xu Zhigang Z   Tan Luxi L   Zhong Cheng C   Zhu Linna L  

RSC advances 20180518 33


In this work, a triphenylamine-benzothiadiazole-based new fluorophore is obtained from a facile "one-step" protocol. A possible reduction mechanism is proposed, and an amine containing α-H plays a key role in the reduction reaction. The resultant product A1H2 exhibits bright red emission in solid state, with an absolute quantum yield of 44.5%. Aggregation induced emission enhancement of A1H2 is also observed with the increased water fraction in THF-H<sub>2</sub>O mixture. The nanoparticles of A1  ...[more]

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