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Design of BDD-TiO2 hybrid electrode with P-N function for photoelectrocatalytic degradation of organic contaminants

机译:具有P-N功能的BDD-TiO2杂化电极光电降解有机污染物的设计

摘要

P-N hybrid electrode of boron-doped diamond (BDD) and TiO2 were designed and fabricated via selective deposition of TiO2 onto BDD electrode. This hybrid electrode exhibit high photoelectrocatalytic activities toward degradation of acid orange 11 (AOII) and 2, 4-dichloropheonl (2, 4-DCP) due to the P-N effect and high electrocatalytic and photocatalytic activities of BDD electrode and TiO2 particles. The structures of TiO2 and BDD were confirmed by Raman spectra analysis. Atom force microscopy and scanning electron microscopy showed that the TiO2 deposits consist of adherent nanomicro-sized particles, scattered on the BDD substrate. AOII and 2,4-DCP in a solution can be efficiently degraded at the hybrid electrode in the photoelectrocatalysis (PEC) process. Effect of applied bias potentials and solution pH values on AOII and 2,4-DCP degradation were investigated. In the electro-oxidation process, some intermediates such as phenols were detected and they accumulated with the reaction evolution based on the analysis of UV-vis and GC-MS variation. By contrast, phenols intermediates will be degraded with the reaction evolution in the photoelectrocatalysis process. And, organic aromatic and aliphatic carboxylic acids were detected. Furthermore, different degradation mechanism of AOII and 2,4-DCP in the electro-oxidation, photocatalysis, and photoelectrocatalysis is proposed.
机译:通过将TiO2选择性沉积到BDD电极上,设计和制造了掺硼金刚石(BDD)和TiO2的P-N杂化电极。由于P-N效应以及BDD电极和TiO2颗粒的高电催化和光催化活性,该混合电极对酸橙11(AOII)和2,4-二氯苯酚(2,4-DCP)的降解表现出高的光电催化活性。通过拉曼光谱分析证实了TiO2和BDD的结构。原子力显微镜和扫描电子显微镜显示,TiO2沉积物由分散在BDD基底上的粘附的纳米微粒组成。溶液中的AOII和2,4-DCP可以在光电催化(PEC)过程中在混合电极上有效降解。研究了施加偏压和溶液pH值对AOII和2,4-DCP降解的影响。在电氧化过程中,通过分析UV-vis和GC-MS的变化,检测到一些中间体,例如酚,并随着反应的进行而积累。相反,在光电催化过程中,酚中间体会随着反应的发展而降解。并且,检测到有机芳族和脂族羧酸。此外,提出了在电氧化,光催化和光电催化中,AOII和2,4-DCP的不同降解机理。

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    Qu Jiuhui; Zhao Xu;

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  • 年度 2008
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