首页> 外文期刊>Chemical engineering journal >Construction of high-efficient photoelectrocatalytic system by coupling with TiO2 nano-tubes photoanode and active carbon/polytetrafluoroethylene cathode and its enhanced photoelectrocatalytic degradation of 2,4-dichlorophene and mechanism
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Construction of high-efficient photoelectrocatalytic system by coupling with TiO2 nano-tubes photoanode and active carbon/polytetrafluoroethylene cathode and its enhanced photoelectrocatalytic degradation of 2,4-dichlorophene and mechanism

机译:TiO2纳米管光阳极与活性炭/聚四氟乙烯阴极偶联构建高效光电催化体系及其对2,4-二氯苯酚的光电催化降解及机理

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In this study, highly-ordered and well-aligned TiO2 nano-tubes (TiO2 NTs) photoelectrodes were successfully fabricated through anodization strategy, followed by post-annealing treatment. Meanwhile, some critical fabricating parameters were optimized through the morphology observation of scanning electron microscope (SEM) images and photocatalytic (PC) degradation of refractory degradation of 2,4-dichlorophene (2,4-DCP) aqueous solution. Furthermore, active carbon/polytetrafluoroethylene (AC/PTFE) cathode was prepared by rolling AC powder and PTFE latex on a machine with the stainless steel as support. Subsequently, an efficient and stable photoelectrocatalytic (PEC) system based on the as-fabricated TiO2 NTs photoanode and AC/PTFE cathode was constructed for the contaminants elimination. It was found that under the optimizing fabricating parameters, the as-constructed PEC system exhibited superior PEC performance (91.1%) for the degradation of 2,4-DCP with the help of +2.0 V external potential. In addition, the enhanced PEC mechanism was proposed and confirmed in detail. This study provides a new insight to construct efficient and stable PEC system which could be a promising candidate in pollutants elimination and water splitting. (C) 2015 Elsevier B.V. All rights reserved.
机译:在这项研究中,通过阳极氧化策略,然后进行后退火处理,成功地制造了高度有序且排列良好的TiO2纳米管(TiO2 NTs)光电极。同时,通过扫描电子显微镜(SEM)图像的形态观察和2,4-二氯苯酚(2,4-DCP)水溶液难降解的光催化(PC)降解,优化了一些关键的制备参数。此外,通过在以不锈钢为载体的机器上轧制AC粉末和PTFE胶乳来制备活性炭/聚四氟乙烯(AC / PTFE)阴极。随后,构建了基于所制造的TiO2 NTs光阳极和AC / PTFE阴极的高效稳定的光电催化(PEC)系统,以消除污染物。发现在最优化的制造参数下,构建的PEC系统在+2.0 V外部电势的帮助下,对2,4-DCP的降解表现出优异的PEC性能(91.1%)。此外,提出并确认了增强的PEC机制。这项研究为构建高效,稳定的PEC系统提供了新的见识,该系统有望成为污染物消除和水分解的有前途的候选者。 (C)2015 Elsevier B.V.保留所有权利。

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