The optical band gap is a major selection criterion for an absorber in photocatalytic water splitting. Due to its ideal value hematite has been intensively investigated without reaching the expectation, yet. In this work, the Fermi level positions in hematite due to doping and contact formation are investigated. An upper boundary for the Fermi level position at 1.8 eV above the valence band maximum due to the formation of polarons is identified. This results in a different concept of the effective band gap for hematite which we believe is transferable to any material with competing polaron formation after optical excitation: the optical band gap of 2.2 eV deviates from an effective electronic band gap of 1.75 eV. The polaron state ac...
Hematite alpha-Fe2O3 is exposed to be an efficient photocatalytic material for the photoelectrochemi...
Although the field of solar water splitting is now forty years old, in recent years there has been a...
Transition metal oxide materials have attracted much attention for photoelectrochemical water splitt...
The optical band gap is a major selection criterion for an absorber in photocatalytic water splitti...
In this work the position of the Fermi level in hematite (Fe2O3) is being manipulating and the acces...
Polaron formation and hopping is known to diminish carrier mobility in the ground state of metal oxi...
Iron oxides such as hematite (α-Fe2O3) play an important role in diverse fields ranging from biogeoc...
We present the analysis of the role of the substitutional doping on the electronic structure of Fe2O...
Hematite has long been a promising photoanode material for photoelectrochem. water splitting due to ...
Hematite (α-Fe2O3) is the most studied artificial oxygen-evolving photo-anode and yet its efficiency...
Small polaron formation is known to limit ground-state mobilities in metal oxide photocatalysts. How...
Hematite is an earth abundant material that has the potential to be used as a photoanode for oxygen ...
The Fermi energy in semiconductors can often be freely controlled across the whole energy gap by dop...
Hematite (α-Fe2O3) constitutes one of the most promising semiconductor materials for the conversion ...
Many metal-oxide light absorbing semiconductors, such as ??-Fe2O3 (hematite), exhibit localized smal...
Hematite alpha-Fe2O3 is exposed to be an efficient photocatalytic material for the photoelectrochemi...
Although the field of solar water splitting is now forty years old, in recent years there has been a...
Transition metal oxide materials have attracted much attention for photoelectrochemical water splitt...
The optical band gap is a major selection criterion for an absorber in photocatalytic water splitti...
In this work the position of the Fermi level in hematite (Fe2O3) is being manipulating and the acces...
Polaron formation and hopping is known to diminish carrier mobility in the ground state of metal oxi...
Iron oxides such as hematite (α-Fe2O3) play an important role in diverse fields ranging from biogeoc...
We present the analysis of the role of the substitutional doping on the electronic structure of Fe2O...
Hematite has long been a promising photoanode material for photoelectrochem. water splitting due to ...
Hematite (α-Fe2O3) is the most studied artificial oxygen-evolving photo-anode and yet its efficiency...
Small polaron formation is known to limit ground-state mobilities in metal oxide photocatalysts. How...
Hematite is an earth abundant material that has the potential to be used as a photoanode for oxygen ...
The Fermi energy in semiconductors can often be freely controlled across the whole energy gap by dop...
Hematite (α-Fe2O3) constitutes one of the most promising semiconductor materials for the conversion ...
Many metal-oxide light absorbing semiconductors, such as ??-Fe2O3 (hematite), exhibit localized smal...
Hematite alpha-Fe2O3 is exposed to be an efficient photocatalytic material for the photoelectrochemi...
Although the field of solar water splitting is now forty years old, in recent years there has been a...
Transition metal oxide materials have attracted much attention for photoelectrochemical water splitt...