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Photoelectrocatalytic Degradation of Paraquat by Pt Loaded TiO2 Nanotubes on Ti Anodes

机译:钛阳极上Pt负载TiO2纳米管光电催化降解百草枯。

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摘要

Nanotube structured TiO2 on Ti surface were prepared in ethylene glycol (Ti/TiO2NTEG) medium by anodic oxidation method with different times and then the plates were calcinated at different temperatures. Non-nanotube structured Ti/TiO2, prepared by thermal oxidation method, and nanotube structured TiO2 on Ti plate in hydrogen fluoride solution were also prepared for comparison. Pt loaded Ti/TiO2NTEG photoanodes were also prepared by cyclic voltammetry method with different cycles and the optimum loaded Pt amount was determined. Photoanodes were characterized by using X-ray Diffraction (XRD), Scanning Electron Microscopy-Energy-Dispersive X-ray Analysis (SEM-EDX), and photocurrent methods. XRD analyses proved that almost all TiO2 is in anatase phase. SEM analyses show that nanotubes and Pt nanoparticles on nanotube surface are dispersed quite homogeneously. The longest nanotubes were obtained in the ethylene glycol medium and the nanotube length increased by increasing applied anodic oxidation time. In addition, a linear correlation between nanotube length and XRD peak intensity was found. Moreover, SEM-EDX and XRD analyses evidence that Pt nanoparticles on nanotube surface are metallic and in cubic structure. Photoelectrocatalytic degradation of paraquat was performed using the prepared photoanodes. Moreover, electrocatalytic and photocatalytic degradations of paraquat were also investigated for comparison, however lower activities were observed. These results evidence that the photoanodes show a significant synergy for photoelectrocatalytic activity.
机译:在乙二醇(Ti / TiO2NTEG)介质中,通过不同时间的阳极氧化法,在钛表面制备了纳米管结构的TiO2,然后将板在不同的温度下煅烧。为了进行比较,还制备了通过热氧化法制备的非纳米管结构的Ti / TiO2和在Ti板上的纳米管结构的TiO2。还通过循环伏安法制备了负载Pt的Ti / TiO2NTEG光阳极,并确定了最佳的负载Pt量。通过使用X射线衍射(XRD),扫描电子显微镜-能量色散X射线分析(SEM-EDX)和光电流方法对光阳极进行了表征。 XRD分析证明几乎所有的TiO2都处于锐钛矿相。扫描电镜分析表明,纳米管表面上的纳米管和铂纳米粒子分布相当均匀。在乙二醇介质中获得最长的纳米管,并且通过增加施加的阳极氧化时间来增加纳米管的长度。另外,发现纳米管长度和XRD峰强度之间具有线性相关性。此外,SEM-EDX和XRD分析证明纳米管表面的Pt纳米颗粒是金属的,并且是立方结构。使用制备的光阳极进行百草枯的光电催化降解。此外,还研究了百草枯的电催化降解和光催化降解以进行比较,但观察到活性较低。这些结果证明,光阳极显示出对光电催化活性的显着协同作用。

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