Doping engineering is of key importance for controlling the electrical, optical, and structural properties of a semiconductor. In more expanded doping systems, codoping with deep insight and understanding of interactions between impurities is necessary to make an efficient photoelectrode. Here, we show that the high formation energy of a Si-doped hematite can be decreased with the introduction of a host Ti-dopant, making easy and cost-efficient solution-based Si doping possible. The effect of the positive interaction between dopants lowers the formation energy in a standard atmosphere to the one under extreme conditions of about 10(-10) atm. By taking advantage of formation energy control, we achieved a photocurrent density of 4.3 mA cm(-2)...
Ti-doped, undoped, and Zn-doped hematite (-Fe2O3) thick (~1 m) films were found to be n-type, weak n...
Solar energy induced water splitting in photoelectrochemical (PEC) cells is one of the most sustaina...
AbstractDue to the band gap of hematite (α-Fe2O3, Eg = 2.1 eV) in visible light region, it was regar...
Doping engineering is of key importance for controlling the electrical, optical, and structural prop...
In this study, we report a strong correlation between the formation energy related with the crystal ...
Hematite is a promising semiconductor for photoelectrochemical water splitting owing to its ideal ba...
This study introduces an insitu fabrication of nanoporous hematite with a Ti-doped SiOx passivation ...
We report an efficient Ti-doped FeOOH (Ti-FeOOH) co-catalyst applied on SiOx thin layer coated Ti-do...
Solar assisted water splitting in a PEC is an attractive concept to store solar energy as hydrogen f...
Solar water splitting is an environmentally friendly reaction of producing hydrogen gas. Since Honda...
peer reviewed(Graph Presented). In this study, we report the synthesis of Ti-doped mesoporous hemati...
The production of solar fuels, i.e. energy-rich molecules obtained from sunlight-driven processes, r...
As one of the most promising materials for solar water oxidation, hematite has attracted intense res...
International audienceUndoped and Ti-doped (2 at. %) epitaxial hematite thin films, in the thickness...
Si, Ge, or Sn doped hematite (α-Fe<sub>2</sub>O<sub>3</sub>) photoanodes show significantly enhanced...
Ti-doped, undoped, and Zn-doped hematite (-Fe2O3) thick (~1 m) films were found to be n-type, weak n...
Solar energy induced water splitting in photoelectrochemical (PEC) cells is one of the most sustaina...
AbstractDue to the band gap of hematite (α-Fe2O3, Eg = 2.1 eV) in visible light region, it was regar...
Doping engineering is of key importance for controlling the electrical, optical, and structural prop...
In this study, we report a strong correlation between the formation energy related with the crystal ...
Hematite is a promising semiconductor for photoelectrochemical water splitting owing to its ideal ba...
This study introduces an insitu fabrication of nanoporous hematite with a Ti-doped SiOx passivation ...
We report an efficient Ti-doped FeOOH (Ti-FeOOH) co-catalyst applied on SiOx thin layer coated Ti-do...
Solar assisted water splitting in a PEC is an attractive concept to store solar energy as hydrogen f...
Solar water splitting is an environmentally friendly reaction of producing hydrogen gas. Since Honda...
peer reviewed(Graph Presented). In this study, we report the synthesis of Ti-doped mesoporous hemati...
The production of solar fuels, i.e. energy-rich molecules obtained from sunlight-driven processes, r...
As one of the most promising materials for solar water oxidation, hematite has attracted intense res...
International audienceUndoped and Ti-doped (2 at. %) epitaxial hematite thin films, in the thickness...
Si, Ge, or Sn doped hematite (α-Fe<sub>2</sub>O<sub>3</sub>) photoanodes show significantly enhanced...
Ti-doped, undoped, and Zn-doped hematite (-Fe2O3) thick (~1 m) films were found to be n-type, weak n...
Solar energy induced water splitting in photoelectrochemical (PEC) cells is one of the most sustaina...
AbstractDue to the band gap of hematite (α-Fe2O3, Eg = 2.1 eV) in visible light region, it was regar...