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将多金属氧酸盐掺入多孔金属有机框架中可大大提高其对阳离子染料的选择性吸附。

Incorporating polyoxometalates into a porous MOF greatly improves its selective adsorption of cationic dyes.

作者信息

Yan Ai-Xue, Yao Shuang, Li Yang-Guang, Zhang Zhi-Ming, Lu Ying, Chen Wei-Lin, Wang En-Bo

机构信息

Key Laboratory of Polyoxometalate Science of Ministry of Education, Department of Chemistry, Northeast Normal University, Renmin Street 5268, Changchun, Jilin 130024 (P.R. China), Fax: (+86) 431-85098787.

出版信息

Chemistry. 2014 Jun 2;20(23):6927-33. doi: 10.1002/chem.201400175. Epub 2014 Apr 15.

Abstract

Various polyoxometalates (POMs) were successfully immobilized to the mesoporous coordination polymer MIL-101 resulting in a series of POM-MOF composite materials POM@MIL-101 (POM = K4PW11VO40, H3PW12O40, K4SiW12O40). These materials were synthesized by a simple one-pot reaction of Keggin POMs, tetramethylammonium hydroxide (TMAH), terephthalic acid (H2bdc), and Cr(3+) ions. XRD, FTIR, thermogravimetric analyses (TG), inductively coupled plasma (ICP) spectrometry, and energy-dispersive X-ray spectroscopy (EDX) collectively confirmed the successful combination of POMs and the porous framework. Further, these composites POM@MIL-101 with different loading of POMs were achieved by variation of the POM dosage. Notably, the uptake capacity of MIL-101 towards organic pollutants in aqueous solution was significantly improved by immobilization of hydrophilic POMs into cages of MIL-101. An uptake capacity of 371 mg g(-1), comparable to that of the graphene oxide sponges, and much higher than that of the commercial activated carbon, was achieved at room temperature in 5 min when dipping 20 mg PW11V@MIL-101 in the methylene blue (MB) solution (100 mL of 100 mg L(-1) MB solution). Further study revealed that the POM@MIL-101 composite materials not only exhibited a fast adsorption rate towards dye molecules, but also possessed of selective adsorption ability of the cationic dyes in wastewater. For example, the adsorption efficiency of PW11V@MIL-101 (10 mg) towards MB (100 mL of 10 mg L(-1)) could reach 98 % in the initial 5 min, and it could capture MB dye molecules from the binary mixture of the MB and MO with similar size. Also, the POM@MIL-101 materials could be readily recycled and reused, and no POM leached in the dye adsorption process.

摘要

多种多金属氧酸盐(POMs)成功固定在介孔配位聚合物MIL-101上,从而得到了一系列POM-MOF复合材料POM@MIL-101(POM = K4PW11VO40、H3PW12O40、K4SiW12O40)。这些材料是通过Keggin型POMs、氢氧化四甲铵(TMAH)、对苯二甲酸(H2bdc)和Cr(3+)离子的简单一锅法反应合成的。X射线衍射(XRD)、傅里叶变换红外光谱(FTIR)、热重分析(TG)、电感耦合等离子体(ICP)光谱和能量色散X射线光谱(EDX)共同证实了POMs与多孔骨架的成功结合。此外,通过改变POM的用量,获得了具有不同POM负载量的这些复合材料POM@MIL-101。值得注意的是,通过将亲水性POMs固定在MIL-101的笼中,MIL-101对水溶液中有机污染物的吸附能力得到了显著提高。当将20 mg PW11V@MIL-101浸入亚甲基蓝(MB)溶液(100 mL 100 mg L-1的MB溶液)中时,在室温下5分钟内实现了371 mg g-1的吸附量,与氧化石墨烯海绵相当,且远高于商业活性炭。进一步研究表明,POM@MIL-101复合材料不仅对染料分子表现出快速的吸附速率,而且对废水中的阳离子染料具有选择性吸附能力。例如,PW11V@MIL-101(10 mg)对MB(100 mL 10 mg L-1)的吸附效率在最初5分钟内可达到98%,并且它可以从尺寸相似的MB和MO的二元混合物中捕获MB染料分子。此外,POM@MIL-101材料可以很容易地回收再利用,并且在染料吸附过程中没有POM浸出。

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