首页> 外文期刊>Electrochimica Acta >Influence of rare earths doping on the structure and electro-catalytic performance of Ti/Sb-Sn0{sub}2 electrodes
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Influence of rare earths doping on the structure and electro-catalytic performance of Ti/Sb-Sn0{sub}2 electrodes

机译:稀土掺杂对Ti / Sb-Sn0 {sub} 2电极结构和电催化性能的影响

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摘要

Rare earth Ce, Eu, Gd and Dy doped Ti/Sb-SnO{sub}2 electrodes were prepared by thermal decomposition and the performance of electrodes for the electro-catalytic decomposition of a model pollutant (phenol) was investigated. Phenol degradation and TOC removal followed pseudo-first-order kinetics in the experimental range, with the maximum rate achieved using Gd-doped electrode and the minimum rate obtained by Ce-doped electrode. Electrodes were characterized by cyclic voltammetry, X-ray diffraction, electron dispersive spectrometry, and X-ray photoelectron spectroscopy. It was suggested that the enhanced performance of the Gd-doped Ti/Sb-SnO{sub}2 electrode arose from the increased adsorption capacity of hydroxyl radicals on the electrode surface and the lower mobility of oxygen atoms in SnO{sub}2 lattice. The redox couple of Ce{sup}(4+)/Ce{sup}(3+) on Ce-doped Ti/Sb-SnO{sub}2 electrode surface functioned as mediators in the electrochemical oxidation process, allowing oxygen transfer in the SnO{sub}2 lattice, and lowered the electro-catalytic ability of the electrode on phenol mineralization.
机译:通过热分解制备了稀土铈,Eu,G和Dy掺杂的Ti / Sb-SnO {sub} 2电极,并研究了电极对模型污染物(苯酚)的电催化分解性能。在实验范围内,苯酚的降解和TOC的去除遵循拟一级动力学,使用掺Gd的电极获得的最大速率和掺Ce的电极获得的最小速率。电极通过循环伏安法,X射线衍射,电子分散光谱和X射线光电子能谱进行表征。有人提出,掺杂Gd的Ti / Sb-SnO {sub} 2电极的性能增强是由于电极表面羟基自由基的吸附能力增强和SnO {sub} 2晶格中氧原子的迁移率较低。 Ce掺杂的Ti / Sb-SnO {sub} 2电极表面上的Ce {sup}(4 +)/ Ce {sup}(3+)氧化还原对在电化学氧化过程中起介体的作用,使氧在SnO {sub} 2晶格,降低了电极对苯酚矿化的电催化能力。

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