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具有酰胺功能化笼的超水稳定金属有机骨架:从水中选择性地吸收和去除抗生素和染料。

An Exceptionally Water Stable Metal-Organic Framework with Amide-Functionalized Cages: Selective CO /CH Uptake and Removal of Antibiotics and Dyes from Water.

机构信息

Department of Chemistry and Key Laboratory for Preparation and Application of Ordered Structural Materials of Guangdong Province, Shantou University, Guangdong, 515063, P. R. China.

MOE Key Laboratory of Bioinorganic and Synthetic Chemistry, Sun Yat-Sen University, Guangdong, 510275, P. R. China.

出版信息

Chemistry. 2017 Sep 21;23(53):13058-13066. doi: 10.1002/chem.201701884. Epub 2017 Jul 27.

Abstract

As the main organic pollutants in wastewater, antibiotics and organic dyes are harmful to the environment and public health, and their removal is important but challenging. In this work, highly porous 3D metal-organic frameworks (MOFs) [M (PDAD)(H O)] (PCN-124-stu; M=Cu, Zn; H PDAD = 5,5'-(pyridine-3,5-dicarbonyl)bis(azanediyl)diisophthalic acid) were synthesized, and PCN-124-stu(Cu) shows excellent chemical and thermal stability. PCN-124-stu(Cu) was used as a host for efficient extraction of various organic dyes, especially the large-molecule dye Coomassie brilliant blue, and fluoroquinolones from water, in comparison with five common MOFs, zeolite 13X, and activated carbon. PCN-124-stu(Cu) exhibits absolute predominance for fluoroquinolone adsorption among these microporous materials because of the H-bonds between fluoroquinolone molecules and the amide groups in the frameworks, except for MIL-100(Cr), which is a mesoporous MOF. Moreover, PCN-124-stu(Cu) could release fluoroquinolones slowly in physiological saline and retained its framework structure after four adsorption/desorption cycles. In addition, PCN-124-stu(Cu) can be used as a platform for selective adsorption of CO /CH

摘要

作为废水中的主要有机污染物,抗生素和有机染料对环境和公众健康有害,去除它们很重要,但具有挑战性。在这项工作中,我们合成了高度多孔的 3D 金属有机骨架(MOFs)[M(PDAD)(H2O)](PCN-124-stu;M=Cu,Zn;H PDAD = 5,5'-(吡啶-3,5-二羰基)双(亚氨基)二异酞酸),并且 PCN-124-stu(Cu)表现出优异的化学和热稳定性。PCN-124-stu(Cu)被用作从水中高效提取各种有机染料,特别是大分子染料考马斯亮蓝和氟喹诺酮的主体,与五种常见的 MOFs、沸石 13X 和活性炭相比。由于氟喹诺酮分子与骨架中的酰胺基团之间的氢键,除了介孔 MOF MIL-100(Cr)之外,PCN-124-stu(Cu)在这些微孔材料中对氟喹诺酮的吸附具有绝对优势。此外,PCN-124-stu(Cu)可以在生理盐水中缓慢释放氟喹诺酮,并且在四个吸附/解吸循环后保留其框架结构。此外,PCN-124-stu(Cu)可用作选择性吸附 CO/CH 的平台

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