Department of Chemical, Biological, Pharmaceutical and Environmental Sciences, University of Messina, ERIC aisbl and CASPE/INSTM, V.le F. Stagno d'Alcontres 31, 98166 Messina, Italy.
Institute for Solar Fuels, Helmholtz-Zentrum Berlin für Materialien und Energie GmbH, Hahn-Meitner-Platz 1, 14109 Berlin, Germany.
Molecules. 2023 Apr 11;28(8):3378. doi: 10.3390/molecules28083378.
Highly ordered TiO nanotube (NT) arrays grown on Ti mesh and Ti foil were successfully prepared by a controlled anodic oxidation process and tested for water photo-electrolysis. Electrochemical impedance spectroscopy (EIS), combined with other electrochemical techniques (cyclic voltammetry and chronoamperometry) in tests performed in the dark and under illumination conditions, was used to correlate the photoactivity to the specific charge transfer resistances associated with a 3D (mesh) or 2D (foil) geometry of the support. The peculiar structure of the nanotubes in the mesh (with better light absorption and faster electron transport along the nanotubes) strongly impacts the catalytic performances under illumination. H production and current density in water photo-electrolysis were over three times higher with the TiONTs/Ti mesh, compared to the foil in the same conditions. The results obtained by the EIS technique, used here for the first time to directly compare TiO nanotubes on two different supports (Ti foil and Ti mesh), led to a better understanding of the electronic properties of TiO nanotubes and the effect of a specific support on its photocatalytic properties.
高度有序的 TiO 纳米管(NT)阵列在 Ti 网和 Ti 箔上通过控制阳极氧化工艺成功制备,并用于水光电解测试。电化学阻抗谱(EIS)与其他电化学技术(循环伏安法和计时电流法)相结合,在黑暗和光照条件下进行测试,将光活性与与支持物的 3D(网)或 2D(箔)几何形状相关的特定电荷转移电阻相关联。纳米管在网中的特殊结构(具有更好的光吸收和沿纳米管更快的电子传输)强烈影响光照下的催化性能。在相同条件下,与 Ti 箔相比,TiONTs/Ti 网的水光电解中 H 产量和电流密度提高了三倍以上。EIS 技术的结果,这里首次用于直接比较两种不同支持物(Ti 箔和 Ti 网)上的 TiO 纳米管,有助于更好地理解 TiO 纳米管的电子特性以及特定支持物对其光催化性能的影响。