Delafossite CuFeO2 is a p-type oxide semiconductor with a band gap of ∼1.5 eV, which has attracted great interests for applications in solar energy harvesting and oxide electronics. However, there are still some discrepancies in the literature regarding its fundamental electronic structure and transport properties. In this paper, we use a synergistic combination of resonant photoemission spectroscopy and X-ray absorption spectroscopy to directly study the electronic structure of well-defined CuFeO2 epitaxial thin films. Our detailed study reveals that CuFeO2 has an indirect and d-d forbidden band gap of 1.5 eV. The top of the valence band (VB) of CuFeO2 mainly consists of occupied Fe 3d states hybridized with Cu 3d and O 2p, and the bottom ...
The recycling of CO2 back into chemicals via photo-electrochemical cells represents a viable route t...
The electronic structure of the Fe-based superconductor SmFeAsO1-xFx (x = 0 and 0.2) is studied with...
The electronic structure of Cu2O and CuO thin films grown on Cu(110) was characterized by X-ray phot...
Delafossite CuFeO2 is a p-type oxide semiconductor with a band gap of ∼1.5 eV, which has attracted g...
Metal oxides are stable, earth abundant semiconductors for the photochemical conversion of sunlight ...
The path to realizing low-cost, stable, and earth-abundant photoelectrodes can be enabled through a ...
The path to realizing low-cost, stable, and earth-abundant photoelectrodes can be enabled through a ...
Three samples of epitaxial delafossite CuFeO2 and CuFe1 − xGaxO2 films were grown using Pulsed Laser...
[[abstract]]This study is focused on the phase change and optoelectronic properties of CuFeO2 film a...
The photochemical reduction of CO<sub>2</sub> to chemicals, such as CO and CH<sub>4</sub>, is a prom...
CuFeO₂ is recognized as a potential photocathode for photo(electro)chemical water splitting. However...
Copper-based delafossite oxides are excellent candidates for the p-type transparent conducting oxide...
p-Type delafossite CuFeO2 has recently been reported as a promising candidate for direct photoelectr...
Using first-principles methods we have calculated electronic structures, optical properties, and hol...
X-ray absorption spectroscopy performed on a CuFeO2 single crystal reveals the pivotal role of the C...
The recycling of CO2 back into chemicals via photo-electrochemical cells represents a viable route t...
The electronic structure of the Fe-based superconductor SmFeAsO1-xFx (x = 0 and 0.2) is studied with...
The electronic structure of Cu2O and CuO thin films grown on Cu(110) was characterized by X-ray phot...
Delafossite CuFeO2 is a p-type oxide semiconductor with a band gap of ∼1.5 eV, which has attracted g...
Metal oxides are stable, earth abundant semiconductors for the photochemical conversion of sunlight ...
The path to realizing low-cost, stable, and earth-abundant photoelectrodes can be enabled through a ...
The path to realizing low-cost, stable, and earth-abundant photoelectrodes can be enabled through a ...
Three samples of epitaxial delafossite CuFeO2 and CuFe1 − xGaxO2 films were grown using Pulsed Laser...
[[abstract]]This study is focused on the phase change and optoelectronic properties of CuFeO2 film a...
The photochemical reduction of CO<sub>2</sub> to chemicals, such as CO and CH<sub>4</sub>, is a prom...
CuFeO₂ is recognized as a potential photocathode for photo(electro)chemical water splitting. However...
Copper-based delafossite oxides are excellent candidates for the p-type transparent conducting oxide...
p-Type delafossite CuFeO2 has recently been reported as a promising candidate for direct photoelectr...
Using first-principles methods we have calculated electronic structures, optical properties, and hol...
X-ray absorption spectroscopy performed on a CuFeO2 single crystal reveals the pivotal role of the C...
The recycling of CO2 back into chemicals via photo-electrochemical cells represents a viable route t...
The electronic structure of the Fe-based superconductor SmFeAsO1-xFx (x = 0 and 0.2) is studied with...
The electronic structure of Cu2O and CuO thin films grown on Cu(110) was characterized by X-ray phot...