首页> 外文期刊>Environmental Science & Technology >Enhanced Generation of Reactive Oxygen Species under Visible Light Irradiation by Adjusting the Exposed Facet of FeWO_4 Nanosheets To Activate Oxalic Acid for Organic Pollutant Removal and Cr(Ⅵ) Reduction
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Enhanced Generation of Reactive Oxygen Species under Visible Light Irradiation by Adjusting the Exposed Facet of FeWO_4 Nanosheets To Activate Oxalic Acid for Organic Pollutant Removal and Cr(Ⅵ) Reduction

机译:通过调节FeWO_4纳米片的暴露面来活化草酸以去除有机污染物和还原Cr(Ⅵ),在可见光照射下增强了活性氧的生成。

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摘要

In this work, taking FeWO4 nanosheets as an example, the activation of oxalic acid (OA) based on facet engineering for the enhanced generation of active radical species was reported, revealing unprecedented surface Fenton activity for pollutant degradation. Density functional theory calculations confirmed the more efficient generation of reactive oxygen species over FeWO4 nanosheets with the {001} facet exposed (FWO-001) under visible light irradiation compared to the efficiency of FeWO4 nanosheets with the {010} facet exposed (FWO-010), which could be attributed to a higher density of iron and the efficient activation of OA on the {001} facet. The H2O2-derived (OH)-O-center dot tended to diffuse away from the active sites of FWO-001 into solution to favor the continuous activation of OA into the active radicals for pollutant redox reactions, but preferred to remain on FWO-010 to hinder the further activation of OA on the {010} facet. Additionally, the generation of (CO2-)-C-center dot endowed FeWO4 with a strong reduction ability. Compared with FWO-010, FWO-001 exhibited enhanced redox activity for the catalytic degradation of organic pollutants and Cr(VI) in the optimized conditions. These findings can help in understanding the facet dependent surface Fenton chemistry of catalytic redox reactions and in designing efficient catalysts for environmental decontamination.
机译:在这项工作中,以FeWO4纳米片为例,报道了基于刻面工程的草酸(OA)活化,以增强活性自由基种类的产生,显示出前所未有的表面Fenton降解污染物的活性。密度泛函理论计算证实,与暴露于{010}刻面的FeWO4纳米片(FWO-010)相比,暴露于{001}刻面(FWO-010)的FeWO4纳米片在可见光下具有{001}刻面的FeWO4纳米片能更有效地产生活性氧。 ),这可以归因于较高的铁密度和{001}面上的OA的有效活化。源自H2O2的(OH)-O-中心点倾向于从FWO-001的活性位点扩散到溶液中,以促进OA连续活化为活性基团以进行污染物的氧化还原反应,但最好保留在FWO-010上以阻止OA在{010}面上的进一步激活。另外,(CO 2-)-C-中心点的产生赋予FeWO 4强大的还原能力。与FWO-010相比,FWO-001在优化的条件下对有机污染物和Cr(VI)的催化降解具有增强的氧化还原活性。这些发现有助于理解催化氧化还原反应的表面依赖性表面芬顿化学,并有助于设计用于环境净化的有效催化剂。

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  • 来源
    《Environmental Science & Technology》 |2019年第18期|11023-11030|共8页
  • 作者单位

    Wuhan Univ Technol Hubei Key Lab Mineral Resources Proc & Environm State Key Lab Silicate Mat Architectures 122 Luoshi Rd Wuhan 430070 Hubei Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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