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A green metal-organic framework to monitor water contaminants.


ABSTRACT: The CIM-80 material (aluminum(iii)-mesaconate) has been synthetized in high yield through a novel green procedure involving water and urea as co-reactants. The CIM-80 material exhibits good thermal stability with a working range from RT to 350 °C with a small contraction upon desolvation. Moreover, this material is stable in water at different pH values (1-10) for at least one week, and shows a LC50 value higher than 2 mg mL-1. The new material has been tested in a microextraction methodology for the monitoring of up to 22 water pollutants while presenting little environmental impact: only 20 mg of CIM-80 and 500 μL of acetonitrile are needed per analysis. The analytical performance of the CIM-80 in the microextraction strategy is similar to or even better for several pollutants than that of MIL-53(Al). The average extraction efficiencies range from ∼20% for heavy polycyclic aromatic hydrocarbons to ∼70-100% for the lighter ones. In the case of the emerging contaminants, the average extraction efficiency can reach values up to 70% for triclosan and carbamazepine.

SUBMITTER: Rocio-Bautista P 

PROVIDER: S-EPMC9085605 | biostudies-literature | 2018 Sep

REPOSITORIES: biostudies-literature

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A green metal-organic framework to monitor water contaminants.

Rocío-Bautista Priscilla P   Pino Verónica V   Ayala Juan H JH   Ruiz-Pérez Catalina C   Vallcorba Oriol O   Afonso Ana M AM   Pasán Jorge J  

RSC advances 20180905 55


The CIM-80 material (aluminum(iii)-mesaconate) has been synthetized in high yield through a novel green procedure involving water and urea as co-reactants. The CIM-80 material exhibits good thermal stability with a working range from RT to 350 °C with a small contraction upon desolvation. Moreover, this material is stable in water at different pH values (1-10) for at least one week, and shows a LC<sub>50</sub> value higher than 2 mg mL<sup>-1</sup>. The new material has been tested in a microext  ...[more]

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