催化作用
纳米棒
化学工程
材料科学
产量(工程)
光催化
试剂
降级(电信)
纳米技术
化学
冶金
有机化学
计算机科学
电信
工程类
作者
Huairu Tian,Jun Peng,Qiuzheng Du,Xuanhong Hui,Hua He
出处
期刊:Dalton Transactions
[The Royal Society of Chemistry]
日期:2018-01-01
卷期号:47 (10): 3417-3424
被引量:36
摘要
A novel, rapid and simple method is described for the synthesis of magnetic MIL-100(Fe) with novel Fe3O4 morphology, which significantly improved the sustainability of conventional fabrication processes in several aspects. The magnetic MOFs were prepared (i) in one pot (instead of multiple steps), (ii) at room temperature (instead of temperatures over 150 °C), (iii) within a few hours with excellent yield (instead of in few days with low productivity) and (iv) in the absence of any corrosive inorganic acid and organic reagent. The materials were tested in the industrially demanded photocatalytic and photo-Fenton degradation of sodium sulfadiazine. The degradation results indicated that the Fe3O4 nanorods could accelerate the catalytic efficiency. The catalyst would be of potential application due to its stable catalytic activity in repeated reaction cycles and no need for regeneration. Therefore, the MIL-100(Fe) and magnetic MIL-100(Fe) proposed in this study are ideal catalysts for the heterogeneous degradation of sodium sulfadiazine.
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