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一种用于监测水中污染物的绿色金属有机框架材料。

A green metal-organic framework to monitor water contaminants.

作者信息

Rocío-Bautista Priscilla, Pino Verónica, Ayala Juan H, Ruiz-Pérez Catalina, Vallcorba Oriol, Afonso Ana M, Pasán Jorge

机构信息

Department of Chemistry, Analytical Chemistry Division, Universidad de La Laguna Apartado 456 38200 La Laguna Spain

Laboratorio de Rayos X y Materiales Moleculares (MATMOL), Department of Physics, Universidad de La Laguna Apartado 456 38200 La Laguna Spain

出版信息

RSC Adv. 2018 Sep 5;8(55):31304-31310. doi: 10.1039/c8ra05862h.

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 LC value higher than 2 mg mL. 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.

摘要

通过一种以水和尿素作为共反应物的新型绿色方法,已高产率合成了CIM - 80材料(间康酸铝(iii))。CIM - 80材料表现出良好的热稳定性,工作温度范围为室温至350°C,去溶剂化时收缩较小。此外,该材料在不同pH值(1 - 10)的水中至少稳定一周,且液相色谱(LC)值高于2 mg/mL。这种新材料已在一种微萃取方法中进行了测试,用于监测多达22种水污染物,同时对环境影响极小:每次分析仅需20 mg的CIM - 80和500 μL乙腈。在微萃取策略中,CIM - 80对几种污染物的分析性能与MIL - 53(Al)相似,甚至更好。重质多环芳烃的平均萃取效率约为20%,轻质多环芳烃的平均萃取效率约为70% - 100%。对于新兴污染物,三氯生和卡马西平的平均萃取效率可达70%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b82/9085605/d6ee1ac40bcc/c8ra05862h-f1.jpg

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