Literature DB >> 30801080

Ce3+ self-doped CeOx/FeOCl: an efficient Fenton catalyst for phenol degradation under mild conditions.

Jian Zhang1, Mengxue Yang, Ye Lian, Mingliang Zhong, Jingquan Sha, Guodong Liu, Xinfu Zhao, Shaojie Liu.   

Abstract

Herein, a novel Ce3+ self-doped CeOx/FeOCl composite was successfully prepared by a facile method for the first time, which showed remarkable catalytic activity as a Fenton catalyst in the degradation of phenol under the conditions of a neutral solution, room temperature and natural light. In CeOx/FeOCl, 5.23% CeOx is the optimal condition, and the degradation constant (k) of CeOx/FeOCl is greater than that of FeOCl by a factor of 10.8. CeOCl in the composite plays a more important role than CeO2, which greatly increases the production of ˙OH radicals. Furthermore, the Ce-doping in FeOCl accelerates the separation efficiency of the photogenerated electron-hole pairs. The increased surface area and surface potential of CeOx/FeOCl than those of FeOCl effectively promote the adsorption of phenol, which is 4.05 times that of FeOCl. According to the DFT calculations, the Ce-doping in FeOCl enhances the structural stability by increasing the strength of the chemical bonds. The adsorption of H2O2 with Ce3+ is energetically favorable, which promotes the production of ˙OH radicals. A synergistic mechanism for the enhanced catalytic performance of CeOx/FeOCl is proposed.

Entities:  

Year:  2019        PMID: 30801080     DOI: 10.1039/c8dt04269a

Source DB:  PubMed          Journal:  Dalton Trans        ISSN: 1477-9226            Impact factor:   4.390


  1 in total

1.  2D graphene/FeOCl heterojunctions with enhanced tribology performance as a lubricant additive for liquid paraffin.

Authors:  Mengxin Xie; Bingli Pan; Ning Li; Shuang Zhao; Junjiang Yan; Shihao Guo; Zhe Chen; Honggang Wang
Journal:  RSC Adv       Date:  2022-01-20       Impact factor: 3.361

  1 in total

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