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2-(Anthracenyl)-4,5-bis(2,5-dimethyl(3-thienyl))-1H-imidazole: regulatable stacking structures, reversible grinding- and heating-induced emission switching, and solid-state photodimerization behavior.


ABSTRACT: 2-(Anthracenyl)-4,5-bis(2,5-dimethyl(3-thienyl))-1H-imidazole (anbdtiH) has been synthesized. Its three solid-state structures, anbdtiH·CH3Cl (1), anbdtiH·2CH3OH (2) and anbdtiH2·CF3COO·CH3OH·H2O (3), have been constructed by skillfully choosing CHCl3 or CH3OH as the solvent and using or not using CF3COOH, with the aim of modifying the intermolecular hydrogen bonds and/or π···π stacking interactions. The three distinct structures show significantly different solid-state luminescence behaviors, an orange-red emission at 603 nm for 1, a blue emission at 453 nm for 2, and a green emission at 533 nm for 3. Upon grinding, these emission wavelengths exhibit evident variations, a blue-shift of Δλ = 83 nm for 1, a red-shift of Δλ = 20 nm for 2, and a blue-shift of Δλ = 54 nm for 3. The emission color of 1 can be reversibly switched between orange-red and green upon regulation of the intermolecular (N-H)imidazole···Nimidazole hydrogen bonds by a grinding-heating process. Moreover, compound 3 can undergo a solid-state [4π + 4π] photodimerization reaction upon irradiation with sunlight, forming 3-dimer. Based on the crystal structures of 1-3, this work discusses the relationship between the molecular stacking mode and the luminescence behavior/photochemical reactivity.

SUBMITTER: Chen JF 

PROVIDER: S-EPMC5952313 | biostudies-literature | 2016 Jan

REPOSITORIES: biostudies-literature

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2-(Anthracenyl)-4,5-bis(2,5-dimethyl(3-thienyl))-1<i>H</i>-imidazole: regulatable stacking structures, reversible grinding- and heating-induced emission switching, and solid-state photodimerization behavior.

Chen Jun-Feng JF   Gong Dan-Ping DP   Wen Jing J   Ma Haibo H   Cao Deng-Ke DK  

Chemical science 20151008 1


2-(Anthracenyl)-4,5-bis(2,5-dimethyl(3-thienyl))-1<i>H</i>-imidazole (anbdtiH) has been synthesized. Its three solid-state structures, anbdtiH·CH<sub>3</sub>Cl (<b>1</b>), anbdtiH·2CH<sub>3</sub>OH (<b>2</b>) and anbdtiH<sub>2</sub>·CF<sub>3</sub>COO·CH<sub>3</sub>OH·H<sub>2</sub>O (<b>3</b>), have been constructed by skillfully choosing CHCl<sub>3</sub> or CH<sub>3</sub>OH as the solvent and using or not using CF<sub>3</sub>COOH, with the aim of modifying the intermolecular hydrogen bonds and/o  ...[more]

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