Metallic nanoparticles for electrocatalytic reduction of halogenated organic compounds: A review

•A review on nanoparticles-modified electrodes for reductive dehalogenation.•The 3D supports for nanoparticles are compared.•Methods to prepare and characterize nanoparticles on porous electrode support.•The influence of the electrode material on electro-dehalogenation process is discussed.•Recent a...

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Published inElectrochimica acta Vol. 377; p. 138039
Main Authors Lou, Yao-Yin, Fontmorin, Jean-Marie, Amrane, A., Fourcade, F., Geneste, F.
Format Journal Article
LanguageEnglish
Published Oxford Elsevier Ltd 01.05.2021
Elsevier BV
Elsevier
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ISSN0013-4686
1873-3859
DOI10.1016/j.electacta.2021.138039

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Abstract •A review on nanoparticles-modified electrodes for reductive dehalogenation.•The 3D supports for nanoparticles are compared.•Methods to prepare and characterize nanoparticles on porous electrode support.•The influence of the electrode material on electro-dehalogenation process is discussed.•Recent applications of nanoparticles-modified electrodes to treat halogenated compounds. Increasing attention is paid to the degradation of refractory halogenated organic compounds in wastewaters. For this purpose, electrocatalytic reduction process constitutes a promising technology due to its high selectivity. Owing to their well-controlled structure and high specific surface area, nanoparticles have been the subject of many investigations in electrocatalysis. This study presents a general review on nanoparticles-modified electrodes to achieve reductive dehalogenation. The role of the electrode support, especially 3-D Carbon and metallic porous electrodes are first discussed. Then, the methods to prepare metallic nanoparticles on the electrode supports included spontaneous deposition and/or electrodeposition are summarized and the commonly used characterization methods of nanoparticles modified electrodes are also presented. The influence of the electrode material, Ag, Pd, and Cu, as representatives, on electro-dehalogenation process is discussed and compared. Finally, this review also highlights the recent applications of these nanoparticles-modified electrodes for the treatment of halogenated organic compounds in aqueous solutions.
AbstractList Increasing attention is paid to the degradation of refractory halogenated organic compounds in wastewaters. For this purpose, electrocatalytic reduction process constitutes a promising technology due to its high selectivity. Owing to their well-controlled structure and high specific surface area, nanoparticles have been the subject of many investigations in electrocatalysis. This study presents a general review on nanoparticles-modified electrodes to achieve reductive dehalogenation. The role of the electrode support, especially 3-D Carbon and metallic porous electrodes are first discussed. Then, the methods to prepare metallic nanoparticles on the electrode supports included spontaneous deposition and/or electrodeposition are summarized and the commonly used characterization methods of nanoparticles modified electrodes are also presented. The influence of the electrode material, Ag, Pd, and Cu, as representatives, on electro-dehalogenation process is discussed and compared. Finally, this review also highlights the recent applications of these nanoparticles-modified electrodes for the treatment of halogenated organic compounds in aqueous solutions.
•A review on nanoparticles-modified electrodes for reductive dehalogenation.•The 3D supports for nanoparticles are compared.•Methods to prepare and characterize nanoparticles on porous electrode support.•The influence of the electrode material on electro-dehalogenation process is discussed.•Recent applications of nanoparticles-modified electrodes to treat halogenated compounds. Increasing attention is paid to the degradation of refractory halogenated organic compounds in wastewaters. For this purpose, electrocatalytic reduction process constitutes a promising technology due to its high selectivity. Owing to their well-controlled structure and high specific surface area, nanoparticles have been the subject of many investigations in electrocatalysis. This study presents a general review on nanoparticles-modified electrodes to achieve reductive dehalogenation. The role of the electrode support, especially 3-D Carbon and metallic porous electrodes are first discussed. Then, the methods to prepare metallic nanoparticles on the electrode supports included spontaneous deposition and/or electrodeposition are summarized and the commonly used characterization methods of nanoparticles modified electrodes are also presented. The influence of the electrode material, Ag, Pd, and Cu, as representatives, on electro-dehalogenation process is discussed and compared. Finally, this review also highlights the recent applications of these nanoparticles-modified electrodes for the treatment of halogenated organic compounds in aqueous solutions.
ArticleNumber 138039
Author Lou, Yao-Yin
Fourcade, F.
Geneste, F.
Fontmorin, Jean-Marie
Amrane, A.
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  orcidid: 0000-0003-4914-0568
  surname: Geneste
  fullname: Geneste, F.
  email: florence.geneste@univ-rennes1.fr
  organization: Univ Rennes, CNRS, ISCR [(Institut des Sciences Chimiques de Rennes)] – UMR 6226, F-35000 Rennes, France
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Keywords Nanoparticles
Electroreduction
Pollutants
Halogenated organics
Deposition
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Snippet •A review on nanoparticles-modified electrodes for reductive dehalogenation.•The 3D supports for nanoparticles are compared.•Methods to prepare and...
Increasing attention is paid to the degradation of refractory halogenated organic compounds in wastewaters. For this purpose, electrocatalytic reduction...
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SubjectTerms Aqueous solutions
Chemical reduction
Chemical Sciences
Copper
Deposition
Electrode materials
Electrodes
Electroreduction
Halogenated organics
Nanoparticles
Organic compounds
Oxidation
Palladium
Pollutants
Selectivity
Silver
Title Metallic nanoparticles for electrocatalytic reduction of halogenated organic compounds: A review
URI https://dx.doi.org/10.1016/j.electacta.2021.138039
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https://hal.science/hal-03196113
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