材料科学
光电流
兴奋剂
X射线光电子能谱
化学气相沉积
化学浴沉积
赤铁矿
带隙
化学工程
分析化学(期刊)
薄膜
纳米技术
化学
光电子学
冶金
工程类
色谱法
作者
Miriam Regue,Ibbi Y. Ahmet,Prince Saurabh Bassi,Andrew L. Johnson,Sebastian Fiechter,Roel van de Krol,Fatwa F. Abdi,Salvador Eslava
标识
DOI:10.1021/acsaem.0c02190
摘要
Water splitting in photoelectrochemical cells is a promising technology to produce solar hydrogen. Fe2TiO5 pseudobrookite with a bandgap of around 2 eV absorbs the predominant visible range of the solar spectrum and is emerging as a promising photoanode for such cells. Herein, we present Fe2TiO5 pseudobrookite-based films prepared by aerosol-assisted chemical vapor deposition and the positive impact of Zn2+ doping in their formation and performance. Undoped and Zn2+-doped Fe2TiO5 pseudobrookite-based photoanodes were characterized by techniques such as XRD, XPS, UPS, and Mott–Schottky analysis. We find that the Zn2+ ions are preferentially incorporated in the pseudobrookite phase over a present secondary hematite (α-Fe2O3) phase. The Zn2+ doping modifies the electronic properties of the films, increases their charge carrier concentration, and upshifts their Fermi level, significantly improving their anodic photocurrent response by a factor of three. In addition, charge transfer efficiency calculations reveal that Zn2+ doping improves both charge separation and injection efficiencies, overall demonstrating a promising approach for the design of enhanced pseudobrookite-based photoanodes.
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