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Turn-on and blue-shift fluorescence sensor toward L-histidine based on stable Cd metal-organic framework with tetranuclear cluster units. | LitMetric

Turn-on and blue-shift fluorescence sensor toward L-histidine based on stable Cd metal-organic framework with tetranuclear cluster units.

Dalton Trans

School of Chemistry and Chemical Engineering, Jiangxi Provincial Key Laboratory of Functional Molecular Materials Chemistry, Jiangxi University of Science and Technology, Ganzhou, Jiangxi Province 341000, P.R. China.

Published: April 2022

A novel Cd-based two-fold interpenetrated metal-organic framework (MOF), namely {[Cd(BTDB)(4,4-bpy)]·DMF} (JXUST-14), (H2BTDB = 4,4'-(benzo[][1,2,5]thiadiazole-4,7-diyl)dibenzoic acid and 4,4-bpy = 4,4-bipyridine), has been prepared and characterized. Single-crystal structure determination reveals that JXUST-14 has a tetranuclear cluster based 6-connected topological network with Schlafli symbol {4·6}. When soaked in common organic solvents and aqueous solutions with diverse pH values of 2-12 for 48 h, JXUST-14 remains stable. JXUST-14 is a highly selective and sensitive luminescent sensor for L-histidine (His) with a detection limit of 11.1 ppm. JXUST-14 is the first Cd-based MOF for the detection of His turn-on and fluorescence blue-shift effects. Experimental study and theoretical calculation suggest that the sensing process can be mainly attributed to a charge transfer and energy transfer mechanism. More interestingly, LED lamps of JXUST-14 and JXUST-14@His were successfully developed, which endowed efficient sensitivity for His detection and thus provide great potential for future applications.

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Source
http://dx.doi.org/10.1039/d2dt00390bDOI Listing

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