Light-Driven Water Oxidation By A Dye-Sensitized Photoanode With A Chromophore/Catalyst Assembly On A Mesoporous Double-Shell Electrode

JOURNAL OF CHEMICAL PHYSICS(2019)

引用 8|浏览39
暂无评分
摘要
A mesoporous atomic layer deposition (ALD) double-shell electrode, Al2O3 (insulating core)//ALD ZnO vertical bar ALD TiO2, on a fluorine-doped tin oxide (FTO) conducting substrate was explored for a photoanode assembly, FTO//Al2O3 (insulating core)//ALD ZnO vertical bar ALD TiO2 vertical bar-chromophore-catalyst, for light-driven water oxidation. Photocurrent densities at photoanodes based on mesoporous ALD double-shell (ALD ZnO vertical bar ALD TiO2 vertical bar) and ALD single-shell (ALD ZnO vertical bar, ALD TiO2 vertical bar) electrodes were investigated for O-2 evaluation by a generator-collector dual working electrode configuration. The high photocurrent densities obtained based on the mesoporous ALD ZnO vertical bar ALD TiO2 photoanode for O-2 evolution arise from a significant barrier to back electron transfer (BET) by the optimized tunneling barrier in the structure with the built-in electric field at the ALD ZnO vertical bar ALD TiO2 interface. The charge recombination is thus largely decreased. In the films, BET following injection has been investigated through kinetic nanosecond transient absorption spectra, and the results of energy band analysis are used to derive insight into the internal electronic structure of the electrodes. Published under license by AIP Publishing.
更多
查看译文
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要