The defective sites on the eight-connected [Zr6O4(OH)(8)(H2O)(4)](8+) nodes of the metal-organic framework (MOF) PCN-700 are the anchoring points for its postsynthetic decoration with extra linkers via solvent-assisted linker incorporation (SALI). The thiazolo[5,4-d]thiazole-2,5-dicarboxylic acid (H(2)TTz) and the newly prepared 2,2 '-(1,4-phenylene)bis(4-methylthiazole-5-carboxylic acid) (H(2)TzPhTz(Me)) have been inserted into PCN-700 to obtain the mixed-linker MOFs (MIXMOFs) [TTz@PCN-700] (1) and [TzPhTz(Me)@PCN-700] (2). The two MIXMOFs are luminescent, and they have been exploited as sensors and adsorbents of diclofenac sodium (DCF) in aqueous solutions at ambient temperature. The emission intensity of 2 shows an unprecedented "parabolic" trend combined with a (lambda(max))(em) blue shift from 470 to 430 nm that induces a color change from turquoise to blue in the presence of DCF upon irradiation with a suitable wavelength. Its DCF limit of detection is 8.4 x 10(-6) M. 1 is an excellent DCF "sponge" in water, with a maximum adsorption capacity (X-m) of 263.2 mg/g. Density functional theory (DFT) modeling of the electronic structure of the empty and DCF-loaded MOFs has revealed that the highest-occupied crystal orbital (HOCO) is mainly centered on Me-2-BPDC2- in 1, while it is prevalently centered on TzPhTz(Me(2-)) in 2. This may be at the origin of the different emission behavior of the two MOFs.

Thiazole-Decorated PCN-700 Metal–Organic Frameworks for Diclofenac Luminescence Sensing and Adsorption in Wastewater

Galli, Simona
;
Donà, Lorenzo;Civalleri, Bartolomeo;Rossin, Andrea
2024-01-01

Abstract

The defective sites on the eight-connected [Zr6O4(OH)(8)(H2O)(4)](8+) nodes of the metal-organic framework (MOF) PCN-700 are the anchoring points for its postsynthetic decoration with extra linkers via solvent-assisted linker incorporation (SALI). The thiazolo[5,4-d]thiazole-2,5-dicarboxylic acid (H(2)TTz) and the newly prepared 2,2 '-(1,4-phenylene)bis(4-methylthiazole-5-carboxylic acid) (H(2)TzPhTz(Me)) have been inserted into PCN-700 to obtain the mixed-linker MOFs (MIXMOFs) [TTz@PCN-700] (1) and [TzPhTz(Me)@PCN-700] (2). The two MIXMOFs are luminescent, and they have been exploited as sensors and adsorbents of diclofenac sodium (DCF) in aqueous solutions at ambient temperature. The emission intensity of 2 shows an unprecedented "parabolic" trend combined with a (lambda(max))(em) blue shift from 470 to 430 nm that induces a color change from turquoise to blue in the presence of DCF upon irradiation with a suitable wavelength. Its DCF limit of detection is 8.4 x 10(-6) M. 1 is an excellent DCF "sponge" in water, with a maximum adsorption capacity (X-m) of 263.2 mg/g. Density functional theory (DFT) modeling of the electronic structure of the empty and DCF-loaded MOFs has revealed that the highest-occupied crystal orbital (HOCO) is mainly centered on Me-2-BPDC2- in 1, while it is prevalently centered on TzPhTz(Me(2-)) in 2. This may be at the origin of the different emission behavior of the two MOFs.
2024
4
6
2339
2351
metal-organic frameworks (MOFs); zirconium; thiazole; diclofenac sodium; luminescence; persistent organic pollutants (POPs)
Provinciali, Giacomo; Capodilupo, Agostina Lina; Mauri, Anna; Galli, Simona; Donà, Lorenzo; Civalleri, Bartolomeo; Tuci, Giulia; Giambastiani, Giulian...espandi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/2029894
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