Review on the Removal of Dyes by Photodegradation Using Metal-Organic Frameworks Under Light Irradiation

Muluneh Endashaw
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引用次数: 2

Abstract

Metal–organic frameworks are coordination network/polymer with organic ligands containing potential voids. MOFs are a class of porous polymeric material, consisting of metal ions linked together by organic bridging ligands. Different Metal-organic framework compounds of Zn, Fe, Al, Cr, Co, and Cd have been successfully synthesized using different synthesis method   under ambient conditions by   different scholars. The photocatalytic activity of these MOFs was investigated by the degradation of different organic dyes (such as: MO, MB, DTBP, Orange G., RhB, RBB, and phenol) in aqueous solution under light irradiation. These MOFs exhibits a promising photocatalytic activity for efficient dye degradation under UV –visible light depending on their band gap differences. The effect of electron acceptors (H 2 O 2, KBrO 3 and (NH 4 ) 2 S 2 O 8 ) addition on the photocatalytic performance of MIL-53(Fe) on MB dye was also evaluated. The photocatalytic performance of this MOF was enhanced by the presence of electron scavengers by prolonging the hole-electron recombination. As a photocatalyst, the most remarkable feature of MOFs is the observation of reverse shape selectivity in which large molecules that cannot access the interior of the micropores are degraded significantly faster than those others that can enter into the pores. Keywords : Metal organic frameworks, photodegradation, photocatalysts, dyes, electron scavengers, and reverse   shape/size selectivity. DOI : 10.7176/CMR/12-1-03 Publication date: January 31 st 2020
金属-有机骨架光降解染料研究进展
金属-有机框架是一种含有潜在空隙的有机配体的配位网络/聚合物。mof是一类多孔聚合物材料,由有机桥接配体连接在一起的金属离子组成。不同的学者在环境条件下采用不同的合成方法成功地合成了Zn、Fe、Al、Cr、Co、Cd等不同的金属有机骨架化合物。通过对不同有机染料(MO、MB、DTBP、Orange G、RhB、RBB、苯酚)的光催化降解,考察了mof的光催化活性。这些MOFs在UV -可见光下表现出良好的光催化活性,这取决于它们的带隙差异。考察了电子受体(h2o2、kbro3和(nh4) 2s2o8)的加入对MIL-53(Fe)在MB染料上的光催化性能的影响。电子清除剂的存在延长了空穴-电子复合的时间,提高了MOF的光催化性能。作为光催化剂,mof最显著的特点是观察到反向形状选择性,其中不能进入微孔内部的大分子比可以进入微孔的大分子降解得快得多。关键词:金属有机框架,光降解,光催化剂,染料,电子清除剂,以及反向形状/尺寸选择性。DOI: 10.7176/CMR/12-1-03出版日期:2020年1月31日
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