首页|核壳结构Fe3O4@SiO2@介孔TiO2的合成及其光电催化降解水中有机污染物

核壳结构Fe3O4@SiO2@介孔TiO2的合成及其光电催化降解水中有机污染物

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为了实现太阳能光催化和光电催化降解污染物实用化,需要研发高效、稳定、易分离的催化剂.采用溶胶-凝胶法和水热法制备了Fe3O4@SiO2@介孔TiO2(FST)复合光电催化剂.通过表征分析证实了纳米FST成功合成,Fe3O4,SiO2和TiO2纳米颗粒层层包裹,具有独特的核壳结构.在外加磁场的作用下,FST催化剂可以很容易地从悬浮液中分离出来.FST的表面光电流响应和阻抗测试结果显示其活性显著增强.利用制备的FST对其他有机污染物在可见光下的光电催化降解进行了研究,对亚甲基蓝、罗丹明B、甲基橙、阿莫西林光电催化90 min,降解率分别为98%,95%,92%,90%.主要活性物种捕获实验表明,FST通过光电耦合作用产生大量h+和·OH从而使污染物降解为CO2,H2O和无机离子.
Synthesis of core-shell Fe3O4@SiO2@mesoporous TiO2 and its photoelectrocatalysis degradation of organic pollutants in water
To realize the practical application of solar photocatalysis and photoelectrocatalysis degradation of pollutants,the efficient,stable,and easily separable catalysts should be studied. Fe3O4@SiO2@mesoporous TiO2 (FST) composite photoelectrocatalysts were prepared by sol-gel and hydrothermal methods. The successful synthesis of nano FST was confirmed by characterization analysis. Fe3O4,SiO2,and TiO2 nanoparticles were coated layer by layer with a unique core-shell structure. The FST catalyst can be easily separated from the suspension under the applied magnetic field. The surface photocurrent response and impedance test results of FST show that its activity is significantly enhanced. The photoelectrocatalysis degradation of other organic pollutants under visible light is investigated using the synthesized FST,the 90 min photoelectrocatalysis degradation rates of methylene blue,rhodamine B,methyl orange,and amoxicillin are 98%,95%,92%,and 90%,respectively. The main active species capture experiments show that FST produces a large amount of h+and·OH through photoelectrocatalysis coupling,which degrades pollutants into CO2,H2O,and inorganic ions.

sol-gel methodhydrothermal methodFe3O4@SiO2@mesoporous TiO2photoelectrocatalysisdegradation mechanism

张博、李雪梅、刘萍、孔琪琪、朱文祺

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山东建筑大学市政与环境工程学院,济南 250101

济南水务集团有限公司,济南 250101

溶胶-凝胶法 水热法 Fe3O4@SiO2@介孔TiO2 光电催化 降解机理

2024

材料工程
中国航发北京航空材料研究院

材料工程

CSTPCD北大核心
影响因子:0.78
ISSN:1001-4381
年,卷(期):2024.52(10)