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Preparation and Characterization of Rare Earth-Doped Ti/SnO2-Sb-Mn Electrodes for the Electrocatalytic Performance

机译:用于电催化性能的稀土掺杂Ti / SnO2-Sb-Mn电极的制备与表征

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The modified Ti/SnO2-Sb-Mn/Re electrodes were prepared using rare earth (Re) Gd, Eu, Ce, and Er and various molar ratios of tin and manganese by thermal decomposition. To investigate the electrocatalytic performance of electrodes, phenol was applied as a model pollutant. Phenol removal pursued pseudofirst-order kinetics in the experimental range. The experimental outcomes show that the phenol degradation at ~95% and ~97% was found in Mn (1?mol%)/Re and Mn (2?mol%)/Re electrodes after treatment for 140?min. Accelerated lifetime testing showed that the best-accelerated service life could be measured only in Mn (3?mol%)/Re and Mn (4?mol%)/Re compared with other prepared Mn (0%,1%, and 2%)/Re electrodes under the condition of 500?mAcm-2 current density in this study. The modified electrodes were then characterized, including oxygen evolution potential (OEP), crystal structure, and surface composition of the electrode coatings.
机译:通过热分解使用稀土(RE)Gd,Eu,Ce和ER以及各种摩尔比,使用稀土(RE)Gd,Eu,Ce和ER以及各种摩尔比,通过热分解来制备改性的Ti / SnO2-Sb-Mn / Re电极。为了研究电极的电催化性能,将苯酚作为模型污染物施用。苯酚去除在实验范围内追求假翅目性动力学。实验结果表明,在处理140℃后,在Mn(1·摩尔%)/ RE和Mn(2摩尔%)/ RE电极中发现〜95%和〜97%的苯酚降解。加速寿命测试表明,与其他制备的Mn(0%,1%,2%(0%,1%,2%)相比,可以仅在Mn(3摩尔%)/ Re和Mn(4摩尔%)/ Re中测量最佳加速的使用寿命。 )/ RE电极在该研究中的500℃的条件下,在该研究中的电流密度。然后表征改性电极,包括电极涂层的氧气进化电位(OEP),晶体结构和表面组成。

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