首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Combined potential of three catalysis types on HO2 nanotube (TNT)/Ti and nanoparticle (TNP)/Ti photoelectrodes: A comparative study
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Combined potential of three catalysis types on HO2 nanotube (TNT)/Ti and nanoparticle (TNP)/Ti photoelectrodes: A comparative study

机译:三种催化类型在HO2纳米管(TNT)/ Ti和纳米粒子(TNP)/ Ti光电极上的组合电势:对比研究

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摘要

The one-dimensionalTiO2 nanotubes (1D TNT/Ti) photoelectrode with a huge anodic area of 38 cm2 were successfully prepared for the first time, with satisfactory morphological integrity, structural strength and distinguished photoactivity, and then utilized in a combined degradation system. A novel and photo-driven combined degradation system (TBPE system), which was functionally comprised of photon-efficient thin-film photocatalysis, conventional bulk-phase photocatalysis and photocarrier-efficient electrocatalysis, was developed on the vertically ordered and upright oriented 1D TNT/Ti rotating photoelectrode (TNT-TBPE system). Its properties were compared to those of the randomly packed zero-dimensional TiO2 nanoparticles (OD TNP/Ti) rotating photoelectrode (TNP-TBPE system). Under the optimized operation conditions, the degradation of methyl orange (MO) was comparatively studied in the TNT-TBPE and TNP-TBPE systems. A 7.6-32.3% degradation enhancement and 20% larger stability indicated the excellent degradation activity and photochemical stability of TBPE system on novel 1D TNT/Ti compared to existing OD TNP/Ti photoelectrode. The difference was attributed to the functional combination of these three catalysis types and the effective incorporation of 1D TNT/Ti rotating photoelectrode.
机译:首次成功制备了阳极面积为38 cm2的一维TiO2纳米管(一维TNT / Ti)光电极,具有令人满意的形貌完整性,结构强度和出色的光活性,然后用于组合降解系统。在垂直有序和垂直定向的一维TNT /钛旋转光电极(TNT-TBPE系统)。将其性能与随机堆积的零维TiO2纳米颗粒(OD TNP / Ti)旋转光电极(TNP-TBPE系统)的性能进行了比较。在优化的操作条件下,比较研究了TNT-TBPE和TNP-TBPE系统中甲基橙(MO)的降解。 7.6-32.3%的降解增强和20%的更大稳定性表明,与现有的OD TNP / Ti光电极相比,TBPE体系在新型1D TNT / Ti上具有优异的降解活性和光化学稳定性。差异归因于这三种催化类型的功能组合以及1D TNT / Ti旋转光电极的有效结合。

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