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Selective reduction of Cu2+ with simultaneous degradation of tetracycline by the dual channels ion imprinted POPD-CoFe2O4 heterojunction photocatalyst

机译:用双通道离子印迹杂散的苯甲板 - Cofe2O4异质结光催化剂同时降解Tetracycline的Cu2 +的选择性降低

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The dual channels ion imprinted POPD-CoFe2O4 heterojunction photocatalyst (magnetic ion imprinted heterojunction photocatalyst) was synthesized by utilizing the microwave-assisted ion imprinting technique. The asprepared photocatalyst can selectively reduce Cu2+ owing to abundant Cu2+ imprinted cavities existed in the imprinted layer and Cu2+ was rapidly reduced by e-in POPD, the ions selectivity coefficient (k(ions)) of Cu2+ to other ions over magnetic ion imprinted heterojunction photocatalyst was 11.495 (k(ions) (2+2+)((Cu/Cd))), 4.716 (k(ions) (3+)((Cu/Fe)) and 15.910 (k(ions) (2+2+)((Cu/Zn)), respectively, and the materials selectivity coefficient (k(materials)) of magnetic ion imprinted heterojunction photocatalyst relative to other materials was 4.998, 2.545, 10.474 and 4.918, respectively, both showed excellent selectivity. Furthermore, with the existence of mesoporous in the imprinted layer, tetracycline can easily contact with CoFe2O4 and further be degraded by h(+) in CoFe2O4. Consequently, selective reduction of Cu2+ and simultaneous degradation of tetracycline can be realized via the dual channels of imprinted cavity and mesoporous. More importantly, the heterojunction structure formed between CoFe2O4 and POPD effectively separated e(-) and h(+), which greatly promoted the photocatalytic activity of selective reduction of Cu2+ and simultaneous degradation of tetracycline. With an enhanced stability for recyling, this work provided a high-efficient and economic technical approach for selective reduction of specific heavy metal ions and simultaneous degradation of organic contaminant in complex water environment.
机译:通过利用微波辅助离子压印技术合成双通道离子印迹POPD-COFE2O4异质结光催化剂(磁离子印迹异质结光催化剂)。由于在压印层中存在的丰富Cu2 +压印空腔,通过E-IN POPD快速减少Cu2 +,Cu2 +在磁离子中的其他离子中的其他离子的选择性系数(K(离子)),Cu2 +迅速减少Cu2 +。是11.495(k(离子)(2 + 2 +)((Cu / Cd))),4.716(K(离子)(3 +)((Cu / Fe))和15.910(K(离子)(2 + 2 +)((Cu / Zn))分别和相对于其他材料的磁离子印记异质结光催化剂的材料选择性系数(K(材料))分别为4.998,2.545,10.474和4.918,两者都显示出优异的选择性。此外随着印迹层中的介孔的存在,四环素可以容易地与COFE 2 O 4接触,并且在COFE2O4中通过H(+)降解。因此,通过印迹腔的双通道可以实现Cu2 +的选择性降低和四环素的同时降解和中孔。更重要的是,异质结石COFE2O4和POPD之间形成的作用有效分离E( - )和H(+),这大大促进了Cu2 +的选择性降低的光催化活性和四环素的同时降解。这项工作具有增强的稳定性,提供了一种高效和经济的技术方法,可用于选择性重质金属离子和复杂水环境中有机污染物的同时降解有机污染物的劣化。

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