电极
材料科学
箔法
钛
基质(水族馆)
结晶度
阳极氧化
电化学
亚甲蓝
化学工程
纳米技术
光催化
冶金
复合材料
化学
催化作用
有机化学
工程类
物理化学
地质学
海洋学
铝
作者
Gustavo Corte Tedesco,Cynthia A. Joll,Wendell P. Ela,Almantas Pivrikas,David J. Henry
标识
DOI:10.1002/slct.202300288
摘要
Abstract A commercial pure titanium (cp‐Ti) powder was used to produce a photoelectrode substrate via 3D‐printing and a commercial titanium foil (Ti‐foil) was used as substrate for direct comparison. TiO 2 nanotubes were prepared on both Ti substrates via electrochemical anodization. Characterisation of electrodes showed similar results in all aspects analysed: morphology, absorbance, crystallinity, and photo‐current response. The efficiency of photoelectrocatlytic treatment of methylene blue dye (MB) in water with a single‐chip UVA‐LED was identical. The cp‐Ti/TiO 2 electrode achieved 93±4 % removal of MB after 210 min, when combined with a four‐chip UVA‐LED. The cp‐Ti photoelectrode was also tested for the first time for photoelectrocatalytic treatment of benzothiazole (BTH). The highest degradation of BTH (98±2 %, 120 min) was also achieved using the four‐chip UVA‐LED. This study supports further development of 3D‐printed electrodes, maximizing the potential for the creation of novel electrodes for use in PEC technologies for abatement of organic pollutants.
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